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size exclusion chromatography sec buffer  (Bio-Rad)


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    Structured Review

    Bio-Rad size exclusion chromatography sec buffer
    Size Exclusion Chromatography Sec Buffer, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 98/100, based on 21640 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/size+exclusion+chromatography+sec+buffer/bio_rxiv__2024__09__24__614577-221-16-39?v=Bio-Rad
    Average 98 stars, based on 21640 article reviews
    size exclusion chromatography sec buffer - by Bioz Stars, 2026-07
    98/100 stars

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    (A) Table showing residues in trimer-interface variants, predicted molecular weight (MW) and oligomeric state determined by size-exclusion <t>chromatography</t> (M=monomer, D=dimer, T=trimer). Proteins were injected onto the <t>SEC</t> column at 8 mg/mL. Associated SEC-MALLS data is provided in ( Supplementary Figure 1 ). Residues found in PaCDT are shaded dark grey. Residues not found in either AncCDT-5 or PaCDT are shaded light-grey. (B) Normalized refractive index chromatograms showing elution peaks of trimer-interface variants. Vertical lines aligned with elution peaks of -AncCDT-5 and PaCDTΔC are shown for reference. (C) Schematic showing mutational pathways linking AncCDT-5 and PaCDT via the interface variants in this study (colored by predicted oligomeric state). (D) From left to right, structures of the monomeric (AncCDT-5, PDB 5T0W), dimeric (Alpha-Fold2 model of A5.1+D101F+P218V) and trimeric (PaCDT, PDB 6BQE) forms of the related proteins.
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    (A) Table showing residues in trimer-interface variants, predicted molecular weight (MW) and oligomeric state determined by size-exclusion <t>chromatography</t> (M=monomer, D=dimer, T=trimer). Proteins were injected onto the <t>SEC</t> column at 8 mg/mL. Associated SEC-MALLS data is provided in ( Supplementary Figure 1 ). Residues found in PaCDT are shaded dark grey. Residues not found in either AncCDT-5 or PaCDT are shaded light-grey. (B) Normalized refractive index chromatograms showing elution peaks of trimer-interface variants. Vertical lines aligned with elution peaks of -AncCDT-5 and PaCDTΔC are shown for reference. (C) Schematic showing mutational pathways linking AncCDT-5 and PaCDT via the interface variants in this study (colored by predicted oligomeric state). (D) From left to right, structures of the monomeric (AncCDT-5, PDB 5T0W), dimeric (Alpha-Fold2 model of A5.1+D101F+P218V) and trimeric (PaCDT, PDB 6BQE) forms of the related proteins.
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    (A) Table showing residues in trimer-interface variants, predicted molecular weight (MW) and oligomeric state determined by size-exclusion <t>chromatography</t> (M=monomer, D=dimer, T=trimer). Proteins were injected onto the <t>SEC</t> column at 8 mg/mL. Associated SEC-MALLS data is provided in ( Supplementary Figure 1 ). Residues found in PaCDT are shaded dark grey. Residues not found in either AncCDT-5 or PaCDT are shaded light-grey. (B) Normalized refractive index chromatograms showing elution peaks of trimer-interface variants. Vertical lines aligned with elution peaks of -AncCDT-5 and PaCDTΔC are shown for reference. (C) Schematic showing mutational pathways linking AncCDT-5 and PaCDT via the interface variants in this study (colored by predicted oligomeric state). (D) From left to right, structures of the monomeric (AncCDT-5, PDB 5T0W), dimeric (Alpha-Fold2 model of A5.1+D101F+P218V) and trimeric (PaCDT, PDB 6BQE) forms of the related proteins.
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    (A) Table showing residues in trimer-interface variants, predicted molecular weight (MW) and oligomeric state determined by size-exclusion <t>chromatography</t> (M=monomer, D=dimer, T=trimer). Proteins were injected onto the <t>SEC</t> column at 8 mg/mL. Associated SEC-MALLS data is provided in ( Supplementary Figure 1 ). Residues found in PaCDT are shaded dark grey. Residues not found in either AncCDT-5 or PaCDT are shaded light-grey. (B) Normalized refractive index chromatograms showing elution peaks of trimer-interface variants. Vertical lines aligned with elution peaks of -AncCDT-5 and PaCDTΔC are shown for reference. (C) Schematic showing mutational pathways linking AncCDT-5 and PaCDT via the interface variants in this study (colored by predicted oligomeric state). (D) From left to right, structures of the monomeric (AncCDT-5, PDB 5T0W), dimeric (Alpha-Fold2 model of A5.1+D101F+P218V) and trimeric (PaCDT, PDB 6BQE) forms of the related proteins.
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    Anatrace size-exclusion chromatography (sec) buffer containing 0.05% lauryl maltose neopentyl glycol (lmng, anatrace)
    (A) Table showing residues in trimer-interface variants, predicted molecular weight (MW) and oligomeric state determined by size-exclusion <t>chromatography</t> (M=monomer, D=dimer, T=trimer). Proteins were injected onto the <t>SEC</t> column at 8 mg/mL. Associated SEC-MALLS data is provided in ( Supplementary Figure 1 ). Residues found in PaCDT are shaded dark grey. Residues not found in either AncCDT-5 or PaCDT are shaded light-grey. (B) Normalized refractive index chromatograms showing elution peaks of trimer-interface variants. Vertical lines aligned with elution peaks of -AncCDT-5 and PaCDTΔC are shown for reference. (C) Schematic showing mutational pathways linking AncCDT-5 and PaCDT via the interface variants in this study (colored by predicted oligomeric state). (D) From left to right, structures of the monomeric (AncCDT-5, PDB 5T0W), dimeric (Alpha-Fold2 model of A5.1+D101F+P218V) and trimeric (PaCDT, PDB 6BQE) forms of the related proteins.
    Size Exclusion Chromatography (Sec) Buffer Containing 0.05% Lauryl Maltose Neopentyl Glycol (Lmng, Anatrace), supplied by Anatrace, 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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    Image Search Results


    (A) Table showing residues in trimer-interface variants, predicted molecular weight (MW) and oligomeric state determined by size-exclusion chromatography (M=monomer, D=dimer, T=trimer). Proteins were injected onto the SEC column at 8 mg/mL. Associated SEC-MALLS data is provided in ( Supplementary Figure 1 ). Residues found in PaCDT are shaded dark grey. Residues not found in either AncCDT-5 or PaCDT are shaded light-grey. (B) Normalized refractive index chromatograms showing elution peaks of trimer-interface variants. Vertical lines aligned with elution peaks of -AncCDT-5 and PaCDTΔC are shown for reference. (C) Schematic showing mutational pathways linking AncCDT-5 and PaCDT via the interface variants in this study (colored by predicted oligomeric state). (D) From left to right, structures of the monomeric (AncCDT-5, PDB 5T0W), dimeric (Alpha-Fold2 model of A5.1+D101F+P218V) and trimeric (PaCDT, PDB 6BQE) forms of the related proteins.

    Journal: bioRxiv

    Article Title: The role of evolutionarily metastable oligomeric states in the optimization of catalytic activity

    doi: 10.1101/2022.09.13.507756

    Figure Lengend Snippet: (A) Table showing residues in trimer-interface variants, predicted molecular weight (MW) and oligomeric state determined by size-exclusion chromatography (M=monomer, D=dimer, T=trimer). Proteins were injected onto the SEC column at 8 mg/mL. Associated SEC-MALLS data is provided in ( Supplementary Figure 1 ). Residues found in PaCDT are shaded dark grey. Residues not found in either AncCDT-5 or PaCDT are shaded light-grey. (B) Normalized refractive index chromatograms showing elution peaks of trimer-interface variants. Vertical lines aligned with elution peaks of -AncCDT-5 and PaCDTΔC are shown for reference. (C) Schematic showing mutational pathways linking AncCDT-5 and PaCDT via the interface variants in this study (colored by predicted oligomeric state). (D) From left to right, structures of the monomeric (AncCDT-5, PDB 5T0W), dimeric (Alpha-Fold2 model of A5.1+D101F+P218V) and trimeric (PaCDT, PDB 6BQE) forms of the related proteins.

    Article Snippet: Samples collected from IMAC were exchanged into size exclusion chromatography (SEC) buffer (20 mM Na 2 HPO 4 , 150 mM NaCl, pH 7.4) using either a HiPrep 26/10 desalting column (GE Healthcare) or through multiple rounds of concentration and dilution using an Amicon Ultra-15 filter unit with a 10 kDa molecular weight cut-off.

    Techniques: Molecular Weight, Size-exclusion Chromatography, Injection, Refractive Index