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首页> 外文期刊>Journal of Molecular Biology >DNA-Segment-Facilitated Dissociation of Fis and NHP6A from DNA Detected via Single-Molecule Mechanical Response
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DNA-Segment-Facilitated Dissociation of Fis and NHP6A from DNA Detected via Single-Molecule Mechanical Response

机译:通过单分子机械反应检测到DNA的DNA分段促进FIS和NHP6A的解离

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The rate of dissociation of a DNA protein complex is often considered to be a property of that complex, without dependence on other nearby molecules in solution. We study the kinetics of dissociation of the abundant Escherichia coli nucleoid protein Fis from DNA, using a single-molecule mechanics assay. The rate of Fis dissociation from DNA is strongly dependent on the solution concentration of DNA. The off-rate (k(off)) of Fis from DNA shows an initially linear dependence on solution DNA concentration, characterized by an exchange rate of k(ex) approximate to 9 x 10(-4) (ng/mu l)(-1) s(-1) for 100 mM univalent salt buffer, with a very small off-rate at zero DNA concentration. The off-rate saturates at approximately k(off,max) approximate to 8 x 10(-3) s(-1) for DNA concentrations above approximate to 20 ng/mu l. This exchange reaction depends mainly on DNA concentration with little dependence on the length of the DNA molecules in solution or on binding affinity, but this does increase with increasing salt concentration. We also show data for the yeast HMGB protein NHP6A showing a similar DNA-concentration-dependent dissociation effect, with faster rates suggesting generally weaker DNA binding by NHP6A relative to Fis. Our results are well described by a model with an intermediate partially dissociated state where the protein is susceptible to being captured by a second DNA segment, in the manner of "direct transfer" reactions studied for other DNA-binding proteins. This type of dissociation pathway may be important to protein DNA binding kinetics in vivo where DNA concentrations are large. (C) 2015 Elsevier Ltd. All rights reserved.
机译:DNA蛋白质复合物的解离率通常被认为是该复合物的性质,而不依赖于溶液中的其他附近分子。我们使用单分子力学测定来研究来自DNA的丰富大肠杆菌核蛋白FIS的富含大肠杆菌核蛋白FIS的动力学。来自DNA的FIS离解的速率强烈依赖于DNA的溶液浓度。来自DNA的FIS的偏移(k(off))显示出对溶液DNA浓度的最初线性依赖性,其特征在于k(ex)的交换速率近似为9×10(-4)(ng / mu l)( -1)S(-1)100毫米单价的盐缓冲液,以零DNA浓度为非常小的偏移。偏移达到约k(关闭,最大值)的近似达到8×10(-3)s(-1),用于高于20ng / mu l的DNA浓度。这种交换反应主要取决于DNA浓度几乎依赖于溶液中的DNA分子的长度或结合亲和力,但随着盐浓度的增加,这会增加。我们还显示出酵母HMGB蛋白NHP6A的数据,所述酵母HMGB蛋白NHP6A显示出类似的DNA浓度依赖性解离效果,速率更快地表明NHP6A相对于FIS的DNA较弱。我们的结果是由具有中间部分解离状态的模型描述的,其中蛋白质易被第二DNA段捕获,以“直接转移”反应用于其他DNA结合蛋白的方式。这种类型的解离途径对于蛋白质DNA结合动力学可能是重要的,其中DNA浓度大。 (c)2015 Elsevier Ltd.保留所有权利。

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