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    Bio-Rad sds page loading 183 buffer
    Sds Page Loading 183 Buffer, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 99/100, based on 12152 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/4x+sds+page+loading+buffer/4x+Laemmli+Sample+Buffer/pm41482165-82-5-9
    Average 99 stars, based on 12152 article reviews
    sds page loading 183 buffer - by Bioz Stars, 2026-09
    99/100 stars

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    DC Protein Assay:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    SDS Page:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    Article Title: Designed miniproteins potently inhibit and protect against MERS-CoV
    Article Snippet: Relative luciferase units were plotted and normalized in Prism (GraphPad): cells without pseudotyped virus added were defined as 0 % infection or 100 % neutralization, and cells with virus only (no miniprotein) were defined as 100 % infection or 0 % neutralization. .. Pseudotyped VSV particles (15 μl) were mixed with 4X SDS-PAGE loading buffer, run on a 4%–15% gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol “mix molecular weight” of the Trans-Blot Turbo System (BioRad). ..

    Article Title: Designed miniproteins potently inhibit and protect against MERS-CoV.
    Article Snippet: Relative luciferase units were plotted and normalized in Prism (GraphPad): cells without pseudotyped virus added were defined as 0 % infection or 100 % neutralization, and cells with virus only (no miniprotein) were defined as 100 % infection or 0 % neutralization. .. Pseudotyped VSV particles (15 μl) were mixed with 4X SDS-PAGE loading buffer, run on a 4 %–15 % gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol ‘‘mix molecular weight’’ of the Trans-Blot Turbo System (BioRad). ..

    Article Title: A widely-occurring family of pore-forming effectors broadens the impact of the Serratia Type VI secretion system
    Article Snippet: The co-cultures were incubated at 30°C ( P. fluorescens and S. marcescens targets) or 37°C ( E. coli targets) for 4 h and then the recovery of viable target cells was enumerated by resuspending the total population in liquid media, performing serial 10-fold dilutions, and plating on media containing the appropriate antibiotic to select the target cells. .. Protein samples were combined with 4x SDS-PAGE loading buffer (200 mM Tris-HCl pH 6.8, 6.4% SDS, 6.4 mM EDTA, 32% glycerol, 0.07% bromophenol blue, 5% β-mercaptoethanol) and boiled for 5 min. 5 μl aliquots were separated on 4–20 % Mini-PROTEAN TGX Precast Protein Gels (Bio-Rad) and stained with Instant Blue (Expedeon). .. For immunoblotting, gels were transferred onto nitrocellulose membranes using the iBlot 2 Gel Transfer Device (Thermo), blocked with 2.5 % milk powder (Marvel) in PBS + 0.1 % Tween-20 and probed with affinity purified anti-Ssp4 (1:200) or anti-Ssp6 antibodies (1:2000).

    Article Title: Structure, receptor recognition, and antigenicity of the human coronavirus CCoV-HuPn-2018 spike glycoprotein
    Article Snippet: A few of the sera (the ones prefixed “FH”) are residual samples from Bloodworks Northwest that were collected from adults in Seattle. .. 15 μl of pseudotyped VSV were mixed with 4X SDS-PAGE loading buffer, run on a 4%–15% gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol mix molecular weight of the Trans-Blot Turbo System (BioRad). ..

    Article Title: Structure, receptor recognition, and antigenicity of the human coronavirus CCoV-HuPn-2018 spike glycoprotein.
    Article Snippet: A few of the sera (the ones prefixed ‘‘FH’’) are residual samples from Bloodworks Northwest that were collected from adults in Seattle. .. 15 ml of pseudotyped VSV were mixed with 4X SDS-PAGE loading buffer, run on a 4%–15% gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol mix molecular weight of the Trans-Blot Turbo System (BioRad). ..

    Molecular Weight:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    Article Title: Designed miniproteins potently inhibit and protect against MERS-CoV
    Article Snippet: Relative luciferase units were plotted and normalized in Prism (GraphPad): cells without pseudotyped virus added were defined as 0 % infection or 100 % neutralization, and cells with virus only (no miniprotein) were defined as 100 % infection or 0 % neutralization. .. Pseudotyped VSV particles (15 μl) were mixed with 4X SDS-PAGE loading buffer, run on a 4%–15% gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol “mix molecular weight” of the Trans-Blot Turbo System (BioRad). ..

    Article Title: Designed miniproteins potently inhibit and protect against MERS-CoV.
    Article Snippet: Relative luciferase units were plotted and normalized in Prism (GraphPad): cells without pseudotyped virus added were defined as 0 % infection or 100 % neutralization, and cells with virus only (no miniprotein) were defined as 100 % infection or 0 % neutralization. .. Pseudotyped VSV particles (15 μl) were mixed with 4X SDS-PAGE loading buffer, run on a 4 %–15 % gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol ‘‘mix molecular weight’’ of the Trans-Blot Turbo System (BioRad). ..

    Article Title: Structure, receptor recognition, and antigenicity of the human coronavirus CCoV-HuPn-2018 spike glycoprotein
    Article Snippet: A few of the sera (the ones prefixed “FH”) are residual samples from Bloodworks Northwest that were collected from adults in Seattle. .. 15 μl of pseudotyped VSV were mixed with 4X SDS-PAGE loading buffer, run on a 4%–15% gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol mix molecular weight of the Trans-Blot Turbo System (BioRad). ..

    Article Title: Structure, receptor recognition, and antigenicity of the human coronavirus CCoV-HuPn-2018 spike glycoprotein.
    Article Snippet: A few of the sera (the ones prefixed ‘‘FH’’) are residual samples from Bloodworks Northwest that were collected from adults in Seattle. .. 15 ml of pseudotyped VSV were mixed with 4X SDS-PAGE loading buffer, run on a 4%–15% gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol mix molecular weight of the Trans-Blot Turbo System (BioRad). ..

    Western Blot:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    Membrane:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    Article Title: Designed miniproteins potently inhibit and protect against MERS-CoV
    Article Snippet: Relative luciferase units were plotted and normalized in Prism (GraphPad): cells without pseudotyped virus added were defined as 0 % infection or 100 % neutralization, and cells with virus only (no miniprotein) were defined as 100 % infection or 0 % neutralization. .. Pseudotyped VSV particles (15 μl) were mixed with 4X SDS-PAGE loading buffer, run on a 4%–15% gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol “mix molecular weight” of the Trans-Blot Turbo System (BioRad). ..

    Article Title: Designed miniproteins potently inhibit and protect against MERS-CoV.
    Article Snippet: Relative luciferase units were plotted and normalized in Prism (GraphPad): cells without pseudotyped virus added were defined as 0 % infection or 100 % neutralization, and cells with virus only (no miniprotein) were defined as 100 % infection or 0 % neutralization. .. Pseudotyped VSV particles (15 μl) were mixed with 4X SDS-PAGE loading buffer, run on a 4 %–15 % gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol ‘‘mix molecular weight’’ of the Trans-Blot Turbo System (BioRad). ..

    Article Title: Structure, receptor recognition, and antigenicity of the human coronavirus CCoV-HuPn-2018 spike glycoprotein
    Article Snippet: A few of the sera (the ones prefixed “FH”) are residual samples from Bloodworks Northwest that were collected from adults in Seattle. .. 15 μl of pseudotyped VSV were mixed with 4X SDS-PAGE loading buffer, run on a 4%–15% gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol mix molecular weight of the Trans-Blot Turbo System (BioRad). ..

    Article Title: Structure, receptor recognition, and antigenicity of the human coronavirus CCoV-HuPn-2018 spike glycoprotein.
    Article Snippet: A few of the sera (the ones prefixed ‘‘FH’’) are residual samples from Bloodworks Northwest that were collected from adults in Seattle. .. 15 ml of pseudotyped VSV were mixed with 4X SDS-PAGE loading buffer, run on a 4%–15% gradient Tris-Glycine Gel (BioRad) and transferred to a PVDF membrane using the protocol mix molecular weight of the Trans-Blot Turbo System (BioRad). ..

    Saline:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    Hood:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    Inverted Microscopy:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    Nucleic Acid Electrophoresis:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    Imaging:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    Fluorescence:

    Article Title: Activity-Based Kinome Profiling using Chemical Proteomics and ATP Acyl Phosphates
    Article Snippet: .. Materials: HEK293T cells (ATCC) Kinase buffer (see recipe) Ultracentrifuge tubes DC protein assay kit II (Bio-Rad #5000112) Desthiobiotin-ATP acyl phosphate nucleotide probe (Thermo Scientific #88311) 4X SDS-PAGE loading buffer (see recipe) SDS-PAGE gel Molecular weight ladder (Precision Plus ProteinTM All Blue; Bio-Rad #1610373) 1X SDS-PAGE running buffer (see recipe) 1X Western blot transfer buffer (see recipe) Nitrocellulose membrane 1X Tris-buffered saline with Tween-20 (TBS-T; see recipe) Bovine serum albumin (BSA; Reagent Grade; VWR #10842-770) Streptavidin DyLight 550 (Thermo Fisher Scientific #84542) Tissue culture hood (biosafety cabinet) Tissue culture plates CO 2 Incubator (37°C and 5% CO 2 ) Inverted microscope Probe-tip sonicator Ultracentrifuge Vortex mixer Gel apparatus Gel electrophoresis system with transfer insert (Bio-Rad Trans-Blot® TurboTM Transfer System #1704150) Rocker Gel imaging system with fluorescence detection Harvest cells: list-behavior=enumerated prefix-word= mark-type=decimal max-label-size=0 Aspirate complete DMEM media from HEK293T cells. ..

    Staining:

    Article Title: A widely-occurring family of pore-forming effectors broadens the impact of the Serratia Type VI secretion system
    Article Snippet: The co-cultures were incubated at 30°C ( P. fluorescens and S. marcescens targets) or 37°C ( E. coli targets) for 4 h and then the recovery of viable target cells was enumerated by resuspending the total population in liquid media, performing serial 10-fold dilutions, and plating on media containing the appropriate antibiotic to select the target cells. .. Protein samples were combined with 4x SDS-PAGE loading buffer (200 mM Tris-HCl pH 6.8, 6.4% SDS, 6.4 mM EDTA, 32% glycerol, 0.07% bromophenol blue, 5% β-mercaptoethanol) and boiled for 5 min. 5 μl aliquots were separated on 4–20 % Mini-PROTEAN TGX Precast Protein Gels (Bio-Rad) and stained with Instant Blue (Expedeon). .. For immunoblotting, gels were transferred onto nitrocellulose membranes using the iBlot 2 Gel Transfer Device (Thermo), blocked with 2.5 % milk powder (Marvel) in PBS + 0.1 % Tween-20 and probed with affinity purified anti-Ssp4 (1:200) or anti-Ssp6 antibodies (1:2000).



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    a , Domain architecture of RAP80 and ARISC constructs. FL, full-length; SIM, small ubiquitin-like modifier (SUMO)-interacting motif; UIM, ubiquitin-interacting motif; AIR, Abraxas1-interacting region; ZnF, zinc finger; MPN, Mpr1, Pad1 N-terminal; CC, coiled coil; UEV, ubiquitin E2 variant; vWFA, von Willebrand factor type A ( left ). Schematics of indicated complexes ( right ). b <t>,</t> <t>SDS-PAGE</t> analysis of ARISC, ARISC–RAP80, and ARISC–RAP80 AIR. c , K63-linked ubiquitin chains (1 µM) were incubated with ARISC or ARISC–RAP80 (5 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. d , K63-Ub2, -Ub4, and - Ub7 chains (1 µM) were incubated with ARISC, ARISC–RAP80, or ARISC–RAP80 AIR (5 nM) for the indicated time points. Cleavage activity was analysed as in c . Data are representative of three independent experiments. e , Schematics ( left ) and SDS-PAGE analysis ( right ) of indicated complexes. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. f , Alexa-Fluor 488 (AF488) labelled distally (AF488- Cys Ub4 K63R ) blocked K63-Ub4 chains (1.5 µM) were incubated with ARISC–RAP80, ARISC–RAP80 ΔUIMs, or ARISC–RAP80 ΔZnF (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and fluorescence scanning ( left ; see Methods ). The disappearance of the K63-Ub4 parent band was quantified using densitometry, and plotted as fraction of substrate consumed (%). Data points are mean ± SEM of two independent experiments ( right ). g , Cyclical and linear K63-Ub5 chains (2 µM) were incubated with ARISC or ARISC–RAP80 (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and Oriole staining. Data are representative of two independent experiments. Ub, ubiquitin; DUB, deubiquitylating enzyme. * indicates lower molecular weight ubiquitin species.
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    a , Domain architecture of RAP80 and ARISC constructs. FL, full-length; SIM, small ubiquitin-like modifier (SUMO)-interacting motif; UIM, ubiquitin-interacting motif; AIR, Abraxas1-interacting region; ZnF, zinc finger; MPN, Mpr1, Pad1 N-terminal; CC, coiled coil; UEV, ubiquitin E2 variant; vWFA, von Willebrand factor type A ( left ). Schematics of indicated complexes ( right ). b <t>,</t> <t>SDS-PAGE</t> analysis of ARISC, ARISC–RAP80, and ARISC–RAP80 AIR. c , K63-linked ubiquitin chains (1 µM) were incubated with ARISC or ARISC–RAP80 (5 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. d , K63-Ub2, -Ub4, and - Ub7 chains (1 µM) were incubated with ARISC, ARISC–RAP80, or ARISC–RAP80 AIR (5 nM) for the indicated time points. Cleavage activity was analysed as in c . Data are representative of three independent experiments. e , Schematics ( left ) and SDS-PAGE analysis ( right ) of indicated complexes. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. f , Alexa-Fluor 488 (AF488) labelled distally (AF488- Cys Ub4 K63R ) blocked K63-Ub4 chains (1.5 µM) were incubated with ARISC–RAP80, ARISC–RAP80 ΔUIMs, or ARISC–RAP80 ΔZnF (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and fluorescence scanning ( left ; see Methods ). The disappearance of the K63-Ub4 parent band was quantified using densitometry, and plotted as fraction of substrate consumed (%). Data points are mean ± SEM of two independent experiments ( right ). g , Cyclical and linear K63-Ub5 chains (2 µM) were incubated with ARISC or ARISC–RAP80 (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and Oriole staining. Data are representative of two independent experiments. Ub, ubiquitin; DUB, deubiquitylating enzyme. * indicates lower molecular weight ubiquitin species.
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    a , Domain architecture of RAP80 and ARISC constructs. FL, full-length; SIM, small ubiquitin-like modifier (SUMO)-interacting motif; UIM, ubiquitin-interacting motif; AIR, Abraxas1-interacting region; ZnF, zinc finger; MPN, Mpr1, Pad1 N-terminal; CC, coiled coil; UEV, ubiquitin E2 variant; vWFA, von Willebrand factor type A ( left ). Schematics of indicated complexes ( right ). b <t>,</t> <t>SDS-PAGE</t> analysis of ARISC, ARISC–RAP80, and ARISC–RAP80 AIR. c , K63-linked ubiquitin chains (1 µM) were incubated with ARISC or ARISC–RAP80 (5 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. d , K63-Ub2, -Ub4, and - Ub7 chains (1 µM) were incubated with ARISC, ARISC–RAP80, or ARISC–RAP80 AIR (5 nM) for the indicated time points. Cleavage activity was analysed as in c . Data are representative of three independent experiments. e , Schematics ( left ) and SDS-PAGE analysis ( right ) of indicated complexes. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. f , Alexa-Fluor 488 (AF488) labelled distally (AF488- Cys Ub4 K63R ) blocked K63-Ub4 chains (1.5 µM) were incubated with ARISC–RAP80, ARISC–RAP80 ΔUIMs, or ARISC–RAP80 ΔZnF (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and fluorescence scanning ( left ; see Methods ). The disappearance of the K63-Ub4 parent band was quantified using densitometry, and plotted as fraction of substrate consumed (%). Data points are mean ± SEM of two independent experiments ( right ). g , Cyclical and linear K63-Ub5 chains (2 µM) were incubated with ARISC or ARISC–RAP80 (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and Oriole staining. Data are representative of two independent experiments. Ub, ubiquitin; DUB, deubiquitylating enzyme. * indicates lower molecular weight ubiquitin species.
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    a , Domain architecture of RAP80 and ARISC constructs. FL, full-length; SIM, small ubiquitin-like modifier (SUMO)-interacting motif; UIM, ubiquitin-interacting motif; AIR, Abraxas1-interacting region; ZnF, zinc finger; MPN, Mpr1, Pad1 N-terminal; CC, coiled coil; UEV, ubiquitin E2 variant; vWFA, von Willebrand factor type A ( left ). Schematics of indicated complexes ( right ). b <t>,</t> <t>SDS-PAGE</t> analysis of ARISC, ARISC–RAP80, and ARISC–RAP80 AIR. c , K63-linked ubiquitin chains (1 µM) were incubated with ARISC or ARISC–RAP80 (5 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. d , K63-Ub2, -Ub4, and - Ub7 chains (1 µM) were incubated with ARISC, ARISC–RAP80, or ARISC–RAP80 AIR (5 nM) for the indicated time points. Cleavage activity was analysed as in c . Data are representative of three independent experiments. e , Schematics ( left ) and SDS-PAGE analysis ( right ) of indicated complexes. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. f , Alexa-Fluor 488 (AF488) labelled distally (AF488- Cys Ub4 K63R ) blocked K63-Ub4 chains (1.5 µM) were incubated with ARISC–RAP80, ARISC–RAP80 ΔUIMs, or ARISC–RAP80 ΔZnF (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and fluorescence scanning ( left ; see Methods ). The disappearance of the K63-Ub4 parent band was quantified using densitometry, and plotted as fraction of substrate consumed (%). Data points are mean ± SEM of two independent experiments ( right ). g , Cyclical and linear K63-Ub5 chains (2 µM) were incubated with ARISC or ARISC–RAP80 (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and Oriole staining. Data are representative of two independent experiments. Ub, ubiquitin; DUB, deubiquitylating enzyme. * indicates lower molecular weight ubiquitin species.
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    a , Domain architecture of RAP80 and ARISC constructs. FL, full-length; SIM, small ubiquitin-like modifier (SUMO)-interacting motif; UIM, ubiquitin-interacting motif; AIR, Abraxas1-interacting region; ZnF, zinc finger; MPN, Mpr1, Pad1 N-terminal; CC, coiled coil; UEV, ubiquitin E2 variant; vWFA, von Willebrand factor type A ( left ). Schematics of indicated complexes ( right ). b <t>,</t> <t>SDS-PAGE</t> analysis of ARISC, ARISC–RAP80, and ARISC–RAP80 AIR. c , K63-linked ubiquitin chains (1 µM) were incubated with ARISC or ARISC–RAP80 (5 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. d , K63-Ub2, -Ub4, and - Ub7 chains (1 µM) were incubated with ARISC, ARISC–RAP80, or ARISC–RAP80 AIR (5 nM) for the indicated time points. Cleavage activity was analysed as in c . Data are representative of three independent experiments. e , Schematics ( left ) and SDS-PAGE analysis ( right ) of indicated complexes. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. f , Alexa-Fluor 488 (AF488) labelled distally (AF488- Cys Ub4 K63R ) blocked K63-Ub4 chains (1.5 µM) were incubated with ARISC–RAP80, ARISC–RAP80 ΔUIMs, or ARISC–RAP80 ΔZnF (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and fluorescence scanning ( left ; see Methods ). The disappearance of the K63-Ub4 parent band was quantified using densitometry, and plotted as fraction of substrate consumed (%). Data points are mean ± SEM of two independent experiments ( right ). g , Cyclical and linear K63-Ub5 chains (2 µM) were incubated with ARISC or ARISC–RAP80 (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and Oriole staining. Data are representative of two independent experiments. Ub, ubiquitin; DUB, deubiquitylating enzyme. * indicates lower molecular weight ubiquitin species.
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    a , Domain architecture of RAP80 and ARISC constructs. FL, full-length; SIM, small ubiquitin-like modifier (SUMO)-interacting motif; UIM, ubiquitin-interacting motif; AIR, Abraxas1-interacting region; ZnF, zinc finger; MPN, Mpr1, Pad1 N-terminal; CC, coiled coil; UEV, ubiquitin E2 variant; vWFA, von Willebrand factor type A ( left ). Schematics of indicated complexes ( right ). b <t>,</t> <t>SDS-PAGE</t> analysis of ARISC, ARISC–RAP80, and ARISC–RAP80 AIR. c , K63-linked ubiquitin chains (1 µM) were incubated with ARISC or ARISC–RAP80 (5 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. d , K63-Ub2, -Ub4, and - Ub7 chains (1 µM) were incubated with ARISC, ARISC–RAP80, or ARISC–RAP80 AIR (5 nM) for the indicated time points. Cleavage activity was analysed as in c . Data are representative of three independent experiments. e , Schematics ( left ) and SDS-PAGE analysis ( right ) of indicated complexes. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. f , Alexa-Fluor 488 (AF488) labelled distally (AF488- Cys Ub4 K63R ) blocked K63-Ub4 chains (1.5 µM) were incubated with ARISC–RAP80, ARISC–RAP80 ΔUIMs, or ARISC–RAP80 ΔZnF (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and fluorescence scanning ( left ; see Methods ). The disappearance of the K63-Ub4 parent band was quantified using densitometry, and plotted as fraction of substrate consumed (%). Data points are mean ± SEM of two independent experiments ( right ). g , Cyclical and linear K63-Ub5 chains (2 µM) were incubated with ARISC or ARISC–RAP80 (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and Oriole staining. Data are representative of two independent experiments. Ub, ubiquitin; DUB, deubiquitylating enzyme. * indicates lower molecular weight ubiquitin species.
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    a , Domain architecture of RAP80 and ARISC constructs. FL, full-length; SIM, small ubiquitin-like modifier (SUMO)-interacting motif; UIM, ubiquitin-interacting motif; AIR, Abraxas1-interacting region; ZnF, zinc finger; MPN, Mpr1, Pad1 N-terminal; CC, coiled coil; UEV, ubiquitin E2 variant; vWFA, von Willebrand factor type A ( left ). Schematics of indicated complexes ( right ). b <t>,</t> <t>SDS-PAGE</t> analysis of ARISC, ARISC–RAP80, and ARISC–RAP80 AIR. c , K63-linked ubiquitin chains (1 µM) were incubated with ARISC or ARISC–RAP80 (5 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. d , K63-Ub2, -Ub4, and - Ub7 chains (1 µM) were incubated with ARISC, ARISC–RAP80, or ARISC–RAP80 AIR (5 nM) for the indicated time points. Cleavage activity was analysed as in c . Data are representative of three independent experiments. e , Schematics ( left ) and SDS-PAGE analysis ( right ) of indicated complexes. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. f , Alexa-Fluor 488 (AF488) labelled distally (AF488- Cys Ub4 K63R ) blocked K63-Ub4 chains (1.5 µM) were incubated with ARISC–RAP80, ARISC–RAP80 ΔUIMs, or ARISC–RAP80 ΔZnF (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and fluorescence scanning ( left ; see Methods ). The disappearance of the K63-Ub4 parent band was quantified using densitometry, and plotted as fraction of substrate consumed (%). Data points are mean ± SEM of two independent experiments ( right ). g , Cyclical and linear K63-Ub5 chains (2 µM) were incubated with ARISC or ARISC–RAP80 (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and Oriole staining. Data are representative of two independent experiments. Ub, ubiquitin; DUB, deubiquitylating enzyme. * indicates lower molecular weight ubiquitin species.
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    Image Search Results


    a , Domain architecture of RAP80 and ARISC constructs. FL, full-length; SIM, small ubiquitin-like modifier (SUMO)-interacting motif; UIM, ubiquitin-interacting motif; AIR, Abraxas1-interacting region; ZnF, zinc finger; MPN, Mpr1, Pad1 N-terminal; CC, coiled coil; UEV, ubiquitin E2 variant; vWFA, von Willebrand factor type A ( left ). Schematics of indicated complexes ( right ). b , SDS-PAGE analysis of ARISC, ARISC–RAP80, and ARISC–RAP80 AIR. c , K63-linked ubiquitin chains (1 µM) were incubated with ARISC or ARISC–RAP80 (5 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. d , K63-Ub2, -Ub4, and - Ub7 chains (1 µM) were incubated with ARISC, ARISC–RAP80, or ARISC–RAP80 AIR (5 nM) for the indicated time points. Cleavage activity was analysed as in c . Data are representative of three independent experiments. e , Schematics ( left ) and SDS-PAGE analysis ( right ) of indicated complexes. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. f , Alexa-Fluor 488 (AF488) labelled distally (AF488- Cys Ub4 K63R ) blocked K63-Ub4 chains (1.5 µM) were incubated with ARISC–RAP80, ARISC–RAP80 ΔUIMs, or ARISC–RAP80 ΔZnF (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and fluorescence scanning ( left ; see Methods ). The disappearance of the K63-Ub4 parent band was quantified using densitometry, and plotted as fraction of substrate consumed (%). Data points are mean ± SEM of two independent experiments ( right ). g , Cyclical and linear K63-Ub5 chains (2 µM) were incubated with ARISC or ARISC–RAP80 (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and Oriole staining. Data are representative of two independent experiments. Ub, ubiquitin; DUB, deubiquitylating enzyme. * indicates lower molecular weight ubiquitin species.

    Journal: bioRxiv

    Article Title: Mechanism of K63-linked polyubiquitin recognition and cleavage by the BRCA1-A complex

    doi: 10.64898/2026.06.05.730395

    Figure Lengend Snippet: a , Domain architecture of RAP80 and ARISC constructs. FL, full-length; SIM, small ubiquitin-like modifier (SUMO)-interacting motif; UIM, ubiquitin-interacting motif; AIR, Abraxas1-interacting region; ZnF, zinc finger; MPN, Mpr1, Pad1 N-terminal; CC, coiled coil; UEV, ubiquitin E2 variant; vWFA, von Willebrand factor type A ( left ). Schematics of indicated complexes ( right ). b , SDS-PAGE analysis of ARISC, ARISC–RAP80, and ARISC–RAP80 AIR. c , K63-linked ubiquitin chains (1 µM) were incubated with ARISC or ARISC–RAP80 (5 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. d , K63-Ub2, -Ub4, and - Ub7 chains (1 µM) were incubated with ARISC, ARISC–RAP80, or ARISC–RAP80 AIR (5 nM) for the indicated time points. Cleavage activity was analysed as in c . Data are representative of three independent experiments. e , Schematics ( left ) and SDS-PAGE analysis ( right ) of indicated complexes. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. f , Alexa-Fluor 488 (AF488) labelled distally (AF488- Cys Ub4 K63R ) blocked K63-Ub4 chains (1.5 µM) were incubated with ARISC–RAP80, ARISC–RAP80 ΔUIMs, or ARISC–RAP80 ΔZnF (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and fluorescence scanning ( left ; see Methods ). The disappearance of the K63-Ub4 parent band was quantified using densitometry, and plotted as fraction of substrate consumed (%). Data points are mean ± SEM of two independent experiments ( right ). g , Cyclical and linear K63-Ub5 chains (2 µM) were incubated with ARISC or ARISC–RAP80 (10 nM) for the indicated time points. Cleavage activity was analysed by SDS-PAGE and Oriole staining. Data are representative of two independent experiments. Ub, ubiquitin; DUB, deubiquitylating enzyme. * indicates lower molecular weight ubiquitin species.

    Article Snippet: Reactions were stopped with the addition of 3 μL 4x SDS-PAGE loading dye [240 mM Tris-HCl pH 6.8, 40% (v/v) glycerol, 8% (w/v) SDS, 0.04% (w/v) bromophenol blue, and 5% (v/v) β-Mercaptoethanol], and products were separated on 4-12% or 12% Nu-PAGE Bis-Tris gels (Invitrogen).

    Techniques: Construct, Ubiquitin Proteomics, Variant Assay, SDS Page, Incubation, Activity Assay, Silver Staining, Fluorescence, Staining, Molecular Weight

    a , K63-Ub2, -Ub4, and -Ub7 chains (1 µM) were incubated with ARISC WT or the indicated ARISC variants (5 nM) for 60 minutes. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. b, SDS-PAGE analysis of ARISC(E33A)–RAP80, ARISC(E33A) BRCC36(S98K) –RAP80, ARISC(E33A) Abraxas1(Δ42-55) –RAP80, and ARISC(E33A) BRCC45(ΔLoop) –RAP80. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. c, Spectral shift assays measuring binding of labelled ARISC(E33A)–RAP80 or the indicated mutant complexes (40 nM) to cyclical K63-Ub6 chains (20 µM-0 µM). Data points are mean ± SEM of two independent experiments carried out in technical duplicates. Dissociation constants (K d ) are indicated; CI, confidence interval. d, Representative images of WT or mutants BRCC36 IRIF in HT-29 cells 4 h post irradiation (10 Gy). Scale bar is 10 µm. e, Western blots showing BRCC36 protein levels in HT-29 cells reconstituted with WT or mutants BRCC36 as indicated (l eft ). Scatter plot showing quantification of the BRCC36 IRIF described in d . Data represent mean ± SEM derived from n ≥ 300 nuclei examined over two independent experiments; p values are indicated, unpaired two-tailed t test ( right ). f, K63-Ub2, -Ub4, and -Ub7 chains (1 µM) were incubated with ARISC WT or ARISC Δ42-55 (Abraxas1 Δ42-55) (5 nM) for up to 60 minutes. Cleavage activity was analysed as in a . Data are representative of two independent experiments. DUB, deubiquitylating enzyme; WT, wild type; Ub, ubiquitin.

    Journal: bioRxiv

    Article Title: Mechanism of K63-linked polyubiquitin recognition and cleavage by the BRCA1-A complex

    doi: 10.64898/2026.06.05.730395

    Figure Lengend Snippet: a , K63-Ub2, -Ub4, and -Ub7 chains (1 µM) were incubated with ARISC WT or the indicated ARISC variants (5 nM) for 60 minutes. Cleavage activity was analysed by SDS-PAGE and silver staining. Data are representative of two independent experiments. b, SDS-PAGE analysis of ARISC(E33A)–RAP80, ARISC(E33A) BRCC36(S98K) –RAP80, ARISC(E33A) Abraxas1(Δ42-55) –RAP80, and ARISC(E33A) BRCC45(ΔLoop) –RAP80. dStrepII, double StrepII tag. * indicates Abraxas1 degradation product. c, Spectral shift assays measuring binding of labelled ARISC(E33A)–RAP80 or the indicated mutant complexes (40 nM) to cyclical K63-Ub6 chains (20 µM-0 µM). Data points are mean ± SEM of two independent experiments carried out in technical duplicates. Dissociation constants (K d ) are indicated; CI, confidence interval. d, Representative images of WT or mutants BRCC36 IRIF in HT-29 cells 4 h post irradiation (10 Gy). Scale bar is 10 µm. e, Western blots showing BRCC36 protein levels in HT-29 cells reconstituted with WT or mutants BRCC36 as indicated (l eft ). Scatter plot showing quantification of the BRCC36 IRIF described in d . Data represent mean ± SEM derived from n ≥ 300 nuclei examined over two independent experiments; p values are indicated, unpaired two-tailed t test ( right ). f, K63-Ub2, -Ub4, and -Ub7 chains (1 µM) were incubated with ARISC WT or ARISC Δ42-55 (Abraxas1 Δ42-55) (5 nM) for up to 60 minutes. Cleavage activity was analysed as in a . Data are representative of two independent experiments. DUB, deubiquitylating enzyme; WT, wild type; Ub, ubiquitin.

    Article Snippet: Reactions were stopped with the addition of 3 μL 4x SDS-PAGE loading dye [240 mM Tris-HCl pH 6.8, 40% (v/v) glycerol, 8% (w/v) SDS, 0.04% (w/v) bromophenol blue, and 5% (v/v) β-Mercaptoethanol], and products were separated on 4-12% or 12% Nu-PAGE Bis-Tris gels (Invitrogen).

    Techniques: Incubation, Activity Assay, SDS Page, Silver Staining, Binding Assay, Mutagenesis, Irradiation, Western Blot, Derivative Assay, Two Tailed Test, Ubiquitin Proteomics