huprot human proteome microarray kit Search Results


90
CDI Laboratories huprot human proteome microarray version 4.0
Huprot Human Proteome Microarray Version 4.0, supplied by CDI Laboratories, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/pmc07140413-90-6-15?v=CDI+Laboratories
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huprot human proteome microarray version 4.0 - by Bioz Stars, 2026-08
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CDI Laboratories human proteome microarray version 2.0
Human Proteome Microarray Version 2.0, supplied by CDI Laboratories, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/pmc08789802-188-3-9?v=CDI+Laboratories
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human proteome microarray version 2.0 - by Bioz Stars, 2026-08
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Cambridge Protein Arrays huprot tm human proteome microarray v4.0
(a) Distribution of PAK6 candidate interactors according to their Z-score retrieved from a Human <t>Proteome</t> <t>Microarray</t> probed with recombinant full-length human PAK6. (b) A GO:BP analysis using gProfiler g:GOSt ( https://biit.cs.ut.ee/gprofiler/gost ) was performed for PAK6 candidate interactors with Z score >2.5 (left) and for PAK6 interactors annotated in PPI web-based tools PINOT, HIPPIE and MIST (PHM) (right). GO:BP terms with 2000 (array) and 1000 (PHM) term size were grouped into semantic categories. (c) Venn diagrams showing overlaps between the primary cilium proteome (GO:0005929, 640 genes) and the experimental (array) PAK6 interactome (left) or the literature-based (PHM) PAK6 interactome (right). (d) Protein network of overlapping PAK6 interactors with the primary cilium proteome (c) (including PAK6) obtained with STRING ( https://string-db.org/cgi/input?sessionId=b1S4T5BW27rz&input_page_show_search=on ); number of nodes: 11, number of edges: 11, average node degree: 2, average local clustering coefficient: 0.591, expected number of edges: 3, PPI enrichment P -value: 0.000502. Blue nodes are ciliary proteins present in the experimental PAK6 interactome (array) and grey nodes are those found in the literature-based PAK6 interactome.
Huprot Tm Human Proteome Microarray V4.0, supplied by Cambridge Protein Arrays, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/bio_rxiv__2024__04__11__589075-146-0-9?v=Cambridge+Protein+Arrays
Average 90 stars, based on 1 article reviews
huprot tm human proteome microarray v4.0 - by Bioz Stars, 2026-08
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CDI Laboratories human protein chip huprot v3.1
(a) Distribution of PAK6 candidate interactors according to their Z-score retrieved from a Human <t>Proteome</t> <t>Microarray</t> probed with recombinant full-length human PAK6. (b) A GO:BP analysis using gProfiler g:GOSt ( https://biit.cs.ut.ee/gprofiler/gost ) was performed for PAK6 candidate interactors with Z score >2.5 (left) and for PAK6 interactors annotated in PPI web-based tools PINOT, HIPPIE and MIST (PHM) (right). GO:BP terms with 2000 (array) and 1000 (PHM) term size were grouped into semantic categories. (c) Venn diagrams showing overlaps between the primary cilium proteome (GO:0005929, 640 genes) and the experimental (array) PAK6 interactome (left) or the literature-based (PHM) PAK6 interactome (right). (d) Protein network of overlapping PAK6 interactors with the primary cilium proteome (c) (including PAK6) obtained with STRING ( https://string-db.org/cgi/input?sessionId=b1S4T5BW27rz&input_page_show_search=on ); number of nodes: 11, number of edges: 11, average node degree: 2, average local clustering coefficient: 0.591, expected number of edges: 3, PPI enrichment P -value: 0.000502. Blue nodes are ciliary proteins present in the experimental PAK6 interactome (array) and grey nodes are those found in the literature-based PAK6 interactome.
Human Protein Chip Huprot V3.1, supplied by CDI Laboratories, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/pmc06749055-190-12-17?v=CDI+Laboratories
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human protein chip huprot v3.1 - by Bioz Stars, 2026-08
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NextGen Sciences huprot™ human proteome microarray
(a) Distribution of PAK6 candidate interactors according to their Z-score retrieved from a Human <t>Proteome</t> <t>Microarray</t> probed with recombinant full-length human PAK6. (b) A GO:BP analysis using gProfiler g:GOSt ( https://biit.cs.ut.ee/gprofiler/gost ) was performed for PAK6 candidate interactors with Z score >2.5 (left) and for PAK6 interactors annotated in PPI web-based tools PINOT, HIPPIE and MIST (PHM) (right). GO:BP terms with 2000 (array) and 1000 (PHM) term size were grouped into semantic categories. (c) Venn diagrams showing overlaps between the primary cilium proteome (GO:0005929, 640 genes) and the experimental (array) PAK6 interactome (left) or the literature-based (PHM) PAK6 interactome (right). (d) Protein network of overlapping PAK6 interactors with the primary cilium proteome (c) (including PAK6) obtained with STRING ( https://string-db.org/cgi/input?sessionId=b1S4T5BW27rz&input_page_show_search=on ); number of nodes: 11, number of edges: 11, average node degree: 2, average local clustering coefficient: 0.591, expected number of edges: 3, PPI enrichment P -value: 0.000502. Blue nodes are ciliary proteins present in the experimental PAK6 interactome (array) and grey nodes are those found in the literature-based PAK6 interactome.
Huprot™ Human Proteome Microarray, supplied by NextGen Sciences, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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huprot™ human proteome microarray - by Bioz Stars, 2026-08
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Cambridge Protein Arrays huprot v3.1-human proteome microarray
CPPED1‐interacting proteins obtained by human proteome <t> microarray. </t> Above‐threshold interactions are listed in order of highest to lowest binding affinity with CPPED1
Huprot V3.1 Human Proteome Microarray, supplied by Cambridge Protein Arrays, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/pmc08366450-111-1-6?v=Cambridge+Protein+Arrays
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huprot v3.1-human proteome microarray - by Bioz Stars, 2026-08
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CDI Laboratories huprot human microarray
CPPED1‐interacting proteins obtained by human proteome <t> microarray. </t> Above‐threshold interactions are listed in order of highest to lowest binding affinity with CPPED1
Huprot Human Microarray, supplied by CDI Laboratories, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/ppr0431637-36-1-4?v=CDI+Laboratories
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huprot human microarray - by Bioz Stars, 2026-08
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Cambridge Protein Arrays human proteome arrays huprot ver2
The FDC mAb CNA.42 recognizes FBXO2. (A) Immunoprecipitation (IP) and characterization of the CNA-42 binding protein. (A-I) Western blotting of total cell lysate (a), negative control (agarose beads only) and the CNA.42-immunoprecipitated proteins (c and d, 1.5 and 6 uls/lane respectively) from tonsillar single cell suspension probed with CNA-42. A single band is detectable at 120 Kd. (A-II) the reactivity of the CNA.42 mAb on <t>the</t> <t>HuProt™</t> human <t>proteome</t> microarray showing subarray 9-1 of array 1300017931 (used for the CNA.42) with fluorescence detection at 633 nm excitation (a) and 543 nm excitation (b). (a) Staining with biotinylated anti-GST and Streptavidin-647. Rows 1-28 show generic staining of the GST-tagged immobilized human proteins, among them FBXO2 in row 11. (b) Probing with CNA.42 and Cy3 labeled anti-mouse IgM shows one hit, the human protein FBXO2 in the subarray. (A-III) Western blotting of tonsillar lysates with FBXO2 and CNA-42-specific antibodies recognize 120 Kd bands in the lysates [CNA.42 BP = CNA.42 binding protein]. (B) In situ hybridization of FBXO2 mRNA (green) showing intracellular signal in tonsillar CD21 + FDC reticula (red). (C) Western blotting of lysates from the CAN.42 expressing CEM cell line using mAb CAN.42 and anti FBXO2. CEM were untreated or treated either with Accell human FBXO2 siRNA (1 uM), or non-targeting control (NTC). GAPDH is used as a loading control. Compared to untreated cells, densitometric analysis with Image J indicates that FBXO2 siRNA-treated cells expressed 50% (*) and 35% (**) less FBXO2 and CNA.42, respectively.
Human Proteome Arrays Huprot Ver2, supplied by Cambridge Protein Arrays, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/pmc09709129-162-15-5?v=Cambridge+Protein+Arrays
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human proteome arrays huprot ver2 - by Bioz Stars, 2026-08
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CDI Laboratories huprot array version 3.1
The FDC mAb CNA.42 recognizes FBXO2. (A) Immunoprecipitation (IP) and characterization of the CNA-42 binding protein. (A-I) Western blotting of total cell lysate (a), negative control (agarose beads only) and the CNA.42-immunoprecipitated proteins (c and d, 1.5 and 6 uls/lane respectively) from tonsillar single cell suspension probed with CNA-42. A single band is detectable at 120 Kd. (A-II) the reactivity of the CNA.42 mAb on <t>the</t> <t>HuProt™</t> human <t>proteome</t> microarray showing subarray 9-1 of array 1300017931 (used for the CNA.42) with fluorescence detection at 633 nm excitation (a) and 543 nm excitation (b). (a) Staining with biotinylated anti-GST and Streptavidin-647. Rows 1-28 show generic staining of the GST-tagged immobilized human proteins, among them FBXO2 in row 11. (b) Probing with CNA.42 and Cy3 labeled anti-mouse IgM shows one hit, the human protein FBXO2 in the subarray. (A-III) Western blotting of tonsillar lysates with FBXO2 and CNA-42-specific antibodies recognize 120 Kd bands in the lysates [CNA.42 BP = CNA.42 binding protein]. (B) In situ hybridization of FBXO2 mRNA (green) showing intracellular signal in tonsillar CD21 + FDC reticula (red). (C) Western blotting of lysates from the CAN.42 expressing CEM cell line using mAb CAN.42 and anti FBXO2. CEM were untreated or treated either with Accell human FBXO2 siRNA (1 uM), or non-targeting control (NTC). GAPDH is used as a loading control. Compared to untreated cells, densitometric analysis with Image J indicates that FBXO2 siRNA-treated cells expressed 50% (*) and 35% (**) less FBXO2 and CNA.42, respectively.
Huprot Array Version 3.1, supplied by CDI Laboratories, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/ppr0246376-44-4-11?v=CDI+Laboratories
Average 90 stars, based on 1 article reviews
huprot array version 3.1 - by Bioz Stars, 2026-08
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CDI Laboratories huprot™ 20k
NONHSAT136151 interacted with RBP QKI. (A) Schematic diagram of RNA pull‐down assay for the identification of NONHSAT136151‐associated proteins. (B) Image of sliver staining gel presenting the proteins interacted with NONHSAT136151. (C) Image of <t>proteome</t> <t>microarray</t> displaying NONHSAT136151‐associated proteins. (D) Venn diagram indicated the overlap of NONHSAT136151‐associated proteins detected by RNA pull‐down and proteome microarray. (E) Western blotting was used to confirm the interaction between NONHSAT136151 and QKI after RNA pull‐down assays. (F) IF/FISH assays were performed to indicate the partial cytoplasmic co‐localization of NONHSAT136151 and QKI in SW480 and SW620 cells. DAPI, 4′,6‐diamidino‐2‐phenylindole; FISH, fluorescence in situ hybridization; IF, immunofluorescence; MS, mass spectrometry; RBP, RNA binding protein.
Huprot™ 20k, supplied by CDI Laboratories, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/pmc10826441-56-7-12?v=CDI+Laboratories
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huprot™ 20k - by Bioz Stars, 2026-08
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CDI Laboratories microarrays huprot v4.0
NONHSAT136151 interacted with RBP QKI. (A) Schematic diagram of RNA pull‐down assay for the identification of NONHSAT136151‐associated proteins. (B) Image of sliver staining gel presenting the proteins interacted with NONHSAT136151. (C) Image of <t>proteome</t> <t>microarray</t> displaying NONHSAT136151‐associated proteins. (D) Venn diagram indicated the overlap of NONHSAT136151‐associated proteins detected by RNA pull‐down and proteome microarray. (E) Western blotting was used to confirm the interaction between NONHSAT136151 and QKI after RNA pull‐down assays. (F) IF/FISH assays were performed to indicate the partial cytoplasmic co‐localization of NONHSAT136151 and QKI in SW480 and SW620 cells. DAPI, 4′,6‐diamidino‐2‐phenylindole; FISH, fluorescence in situ hybridization; IF, immunofluorescence; MS, mass spectrometry; RBP, RNA binding protein.
Microarrays Huprot V4.0, supplied by CDI Laboratories, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/pmc10406426-38-3-7?v=CDI+Laboratories
Average 90 stars, based on 1 article reviews
microarrays huprot v4.0 - by Bioz Stars, 2026-08
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CDI Laboratories huprot array
NONHSAT136151 interacted with RBP QKI. (A) Schematic diagram of RNA pull‐down assay for the identification of NONHSAT136151‐associated proteins. (B) Image of sliver staining gel presenting the proteins interacted with NONHSAT136151. (C) Image of <t>proteome</t> <t>microarray</t> displaying NONHSAT136151‐associated proteins. (D) Venn diagram indicated the overlap of NONHSAT136151‐associated proteins detected by RNA pull‐down and proteome microarray. (E) Western blotting was used to confirm the interaction between NONHSAT136151 and QKI after RNA pull‐down assays. (F) IF/FISH assays were performed to indicate the partial cytoplasmic co‐localization of NONHSAT136151 and QKI in SW480 and SW620 cells. DAPI, 4′,6‐diamidino‐2‐phenylindole; FISH, fluorescence in situ hybridization; IF, immunofluorescence; MS, mass spectrometry; RBP, RNA binding protein.
Huprot Array, supplied by CDI Laboratories, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/huprot+human+proteome+microarray+kit/pmc05780649-564-26-32?v=CDI+Laboratories
Average 90 stars, based on 1 article reviews
huprot array - by Bioz Stars, 2026-08
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Image Search Results


(a) Distribution of PAK6 candidate interactors according to their Z-score retrieved from a Human Proteome Microarray probed with recombinant full-length human PAK6. (b) A GO:BP analysis using gProfiler g:GOSt ( https://biit.cs.ut.ee/gprofiler/gost ) was performed for PAK6 candidate interactors with Z score >2.5 (left) and for PAK6 interactors annotated in PPI web-based tools PINOT, HIPPIE and MIST (PHM) (right). GO:BP terms with 2000 (array) and 1000 (PHM) term size were grouped into semantic categories. (c) Venn diagrams showing overlaps between the primary cilium proteome (GO:0005929, 640 genes) and the experimental (array) PAK6 interactome (left) or the literature-based (PHM) PAK6 interactome (right). (d) Protein network of overlapping PAK6 interactors with the primary cilium proteome (c) (including PAK6) obtained with STRING ( https://string-db.org/cgi/input?sessionId=b1S4T5BW27rz&input_page_show_search=on ); number of nodes: 11, number of edges: 11, average node degree: 2, average local clustering coefficient: 0.591, expected number of edges: 3, PPI enrichment P -value: 0.000502. Blue nodes are ciliary proteins present in the experimental PAK6 interactome (array) and grey nodes are those found in the literature-based PAK6 interactome.

Journal: bioRxiv

Article Title: PAK6 rescues pathogenic LRRK2-mediated ciliogenesis and centrosomal cohesion defects in a mutation-specific manner

doi: 10.1101/2024.04.11.589075

Figure Lengend Snippet: (a) Distribution of PAK6 candidate interactors according to their Z-score retrieved from a Human Proteome Microarray probed with recombinant full-length human PAK6. (b) A GO:BP analysis using gProfiler g:GOSt ( https://biit.cs.ut.ee/gprofiler/gost ) was performed for PAK6 candidate interactors with Z score >2.5 (left) and for PAK6 interactors annotated in PPI web-based tools PINOT, HIPPIE and MIST (PHM) (right). GO:BP terms with 2000 (array) and 1000 (PHM) term size were grouped into semantic categories. (c) Venn diagrams showing overlaps between the primary cilium proteome (GO:0005929, 640 genes) and the experimental (array) PAK6 interactome (left) or the literature-based (PHM) PAK6 interactome (right). (d) Protein network of overlapping PAK6 interactors with the primary cilium proteome (c) (including PAK6) obtained with STRING ( https://string-db.org/cgi/input?sessionId=b1S4T5BW27rz&input_page_show_search=on ); number of nodes: 11, number of edges: 11, average node degree: 2, average local clustering coefficient: 0.591, expected number of edges: 3, PPI enrichment P -value: 0.000502. Blue nodes are ciliary proteins present in the experimental PAK6 interactome (array) and grey nodes are those found in the literature-based PAK6 interactome.

Article Snippet: HuProt TM Human Proteome Microarray v4.0 was purchased from Cambridge Protein Arrays (Babraham Research Campus, Cambridge, UK) and employed to screen PAK6 interactor candidates following manufacturer’s instructions.

Techniques: Microarray, Recombinant

CPPED1‐interacting proteins obtained by human proteome  microarray.  Above‐threshold interactions are listed in order of highest to lowest binding affinity with CPPED1

Journal: Journal of Cellular and Molecular Medicine

Article Title: Human CPPED1 belongs to calcineurin‐like metallophosphoesterase superfamily and dephosphorylates PI3K‐AKT pathway component PAK4

doi: 10.1111/jcmm.16607

Figure Lengend Snippet: CPPED1‐interacting proteins obtained by human proteome microarray. Above‐threshold interactions are listed in order of highest to lowest binding affinity with CPPED1

Article Snippet: The HuProt TM v3.1‐Human Proteome Microarray (Cambridge Protein Arrays Ltd.) was used to identify protein interactions on an immobilized array.

Techniques: Microarray, Binding Assay, Derivative Assay, RNA Binding Assay, Ubiquitin Proteomics, Transduction

KEGG pathway analysis of CPPED1 binding partners identified by human proteome  microarray.  Significant terms ( P <.05) are shown

Journal: Journal of Cellular and Molecular Medicine

Article Title: Human CPPED1 belongs to calcineurin‐like metallophosphoesterase superfamily and dephosphorylates PI3K‐AKT pathway component PAK4

doi: 10.1111/jcmm.16607

Figure Lengend Snippet: KEGG pathway analysis of CPPED1 binding partners identified by human proteome microarray. Significant terms ( P <.05) are shown

Article Snippet: The HuProt TM v3.1‐Human Proteome Microarray (Cambridge Protein Arrays Ltd.) was used to identify protein interactions on an immobilized array.

Techniques: Binding Assay, Microarray

The FDC mAb CNA.42 recognizes FBXO2. (A) Immunoprecipitation (IP) and characterization of the CNA-42 binding protein. (A-I) Western blotting of total cell lysate (a), negative control (agarose beads only) and the CNA.42-immunoprecipitated proteins (c and d, 1.5 and 6 uls/lane respectively) from tonsillar single cell suspension probed with CNA-42. A single band is detectable at 120 Kd. (A-II) the reactivity of the CNA.42 mAb on the HuProt™ human proteome microarray showing subarray 9-1 of array 1300017931 (used for the CNA.42) with fluorescence detection at 633 nm excitation (a) and 543 nm excitation (b). (a) Staining with biotinylated anti-GST and Streptavidin-647. Rows 1-28 show generic staining of the GST-tagged immobilized human proteins, among them FBXO2 in row 11. (b) Probing with CNA.42 and Cy3 labeled anti-mouse IgM shows one hit, the human protein FBXO2 in the subarray. (A-III) Western blotting of tonsillar lysates with FBXO2 and CNA-42-specific antibodies recognize 120 Kd bands in the lysates [CNA.42 BP = CNA.42 binding protein]. (B) In situ hybridization of FBXO2 mRNA (green) showing intracellular signal in tonsillar CD21 + FDC reticula (red). (C) Western blotting of lysates from the CAN.42 expressing CEM cell line using mAb CAN.42 and anti FBXO2. CEM were untreated or treated either with Accell human FBXO2 siRNA (1 uM), or non-targeting control (NTC). GAPDH is used as a loading control. Compared to untreated cells, densitometric analysis with Image J indicates that FBXO2 siRNA-treated cells expressed 50% (*) and 35% (**) less FBXO2 and CNA.42, respectively.

Journal: Frontiers in Medicine

Article Title: Follicular dendritic cell differentiation is associated with distinct synovial pathotype signatures in rheumatoid arthritis

doi: 10.3389/fmed.2022.1013660

Figure Lengend Snippet: The FDC mAb CNA.42 recognizes FBXO2. (A) Immunoprecipitation (IP) and characterization of the CNA-42 binding protein. (A-I) Western blotting of total cell lysate (a), negative control (agarose beads only) and the CNA.42-immunoprecipitated proteins (c and d, 1.5 and 6 uls/lane respectively) from tonsillar single cell suspension probed with CNA-42. A single band is detectable at 120 Kd. (A-II) the reactivity of the CNA.42 mAb on the HuProt™ human proteome microarray showing subarray 9-1 of array 1300017931 (used for the CNA.42) with fluorescence detection at 633 nm excitation (a) and 543 nm excitation (b). (a) Staining with biotinylated anti-GST and Streptavidin-647. Rows 1-28 show generic staining of the GST-tagged immobilized human proteins, among them FBXO2 in row 11. (b) Probing with CNA.42 and Cy3 labeled anti-mouse IgM shows one hit, the human protein FBXO2 in the subarray. (A-III) Western blotting of tonsillar lysates with FBXO2 and CNA-42-specific antibodies recognize 120 Kd bands in the lysates [CNA.42 BP = CNA.42 binding protein]. (B) In situ hybridization of FBXO2 mRNA (green) showing intracellular signal in tonsillar CD21 + FDC reticula (red). (C) Western blotting of lysates from the CAN.42 expressing CEM cell line using mAb CAN.42 and anti FBXO2. CEM were untreated or treated either with Accell human FBXO2 siRNA (1 uM), or non-targeting control (NTC). GAPDH is used as a loading control. Compared to untreated cells, densitometric analysis with Image J indicates that FBXO2 siRNA-treated cells expressed 50% (*) and 35% (**) less FBXO2 and CNA.42, respectively.

Article Snippet: CNA.42 specificity was assessed in Cambridge Protein Arrays Ltd., Babraham Research Campus, Cambridge, UK using human proteome arrays (HuProt Ver2).

Techniques: Immunoprecipitation, Binding Assay, Western Blot, Negative Control, Suspension, Microarray, Fluorescence, Staining, Labeling, In Situ Hybridization, Expressing, Control

NONHSAT136151 interacted with RBP QKI. (A) Schematic diagram of RNA pull‐down assay for the identification of NONHSAT136151‐associated proteins. (B) Image of sliver staining gel presenting the proteins interacted with NONHSAT136151. (C) Image of proteome microarray displaying NONHSAT136151‐associated proteins. (D) Venn diagram indicated the overlap of NONHSAT136151‐associated proteins detected by RNA pull‐down and proteome microarray. (E) Western blotting was used to confirm the interaction between NONHSAT136151 and QKI after RNA pull‐down assays. (F) IF/FISH assays were performed to indicate the partial cytoplasmic co‐localization of NONHSAT136151 and QKI in SW480 and SW620 cells. DAPI, 4′,6‐diamidino‐2‐phenylindole; FISH, fluorescence in situ hybridization; IF, immunofluorescence; MS, mass spectrometry; RBP, RNA binding protein.

Journal: Journal of Cellular and Molecular Medicine

Article Title: FOXP3 ‐regulated lncRNA NONHSAT136151 promotes colorectal cancer progression by disrupting QKI interaction with target mRNAs

doi: 10.1111/jcmm.18068

Figure Lengend Snippet: NONHSAT136151 interacted with RBP QKI. (A) Schematic diagram of RNA pull‐down assay for the identification of NONHSAT136151‐associated proteins. (B) Image of sliver staining gel presenting the proteins interacted with NONHSAT136151. (C) Image of proteome microarray displaying NONHSAT136151‐associated proteins. (D) Venn diagram indicated the overlap of NONHSAT136151‐associated proteins detected by RNA pull‐down and proteome microarray. (E) Western blotting was used to confirm the interaction between NONHSAT136151 and QKI after RNA pull‐down assays. (F) IF/FISH assays were performed to indicate the partial cytoplasmic co‐localization of NONHSAT136151 and QKI in SW480 and SW620 cells. DAPI, 4′,6‐diamidino‐2‐phenylindole; FISH, fluorescence in situ hybridization; IF, immunofluorescence; MS, mass spectrometry; RBP, RNA binding protein.

Article Snippet: Fluorescent labelled NONHSAT136151 was hybridised with the human proteome microarray (HuProt™ 20K; CDI Laboratories, Inc.) for NONHSAT136151‐binding protein detection.

Techniques: Pull Down Assay, Staining, Microarray, Western Blot, Fluorescence, In Situ Hybridization, Immunofluorescence, Mass Spectrometry, RNA Binding Assay