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Updated: Jul 21, 2026

Tools to Study the Role of Architectural Protein HMGB1 in the Processing of Helix Distorting, Site-specific DNA Interstrand Crosslinks
Published on: November 10, 2016
Effect of pH on interactions between DNA and high-mobility group protein HMG1
1Department of Molecular and Cell Biology, University of California, Berkeley 94720.
Abstract:
Fluorescence quenching was used to test the effect of pH changes on the binding of high-mobility group protein 1 (HMG1) to double-stranded and single-stranded DNA. At pH 7.5, the binding constant K for double-stranded DNA was 3 x 10(6) M-1, the binding site size n was 13, and the cooperativity factor q was 78, while at pH 6 the corresponding values were K = 12 x 10(6) M-1, n = 54, and q = 770. For the binding of HMG1 to single-stranded DNA at pH 7.5, the values were K = 2 x 10(6) M-1, n = 7, and q = 60, whereas at pH 6 they were K = 3 x 10(6) M-1, n = 14, and q = 440. Denaturation of HMG1 by oxidation of its sulfhydryl groups substantially affected the binding parameters. At pH 6, double-stranded DNA bound oxidized HMG1 with K = 6 x 10(6) M-1, n = 16, and q = 200, and single-stranded DNA bound with K = 3 x 10(6) M-1, n = 7, and q = 180. The sensitivity of the double-stranded DNA-HMG1 interaction to pH, along with an earlier report of a sharp optimum of binding at 140 mM NaCl, reveals a potential for in vivo regulation of the strength and mode of HMG1 binding by DNA through the action of analogous factors in the cellular milieu.
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