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少量的电荷中和足以使核小体核心DNA弯曲到其超螺旋斜面上吗?

Is a small number of charge neutralizations sufficient to bend nucleosome core DNA onto its superhelical ramp?

作者信息

Manning Gerald S

机构信息

Department of Chemistry and Chemical Biology, Rutgers, The State University of New Jersey, 610 Taylor Road, Piscataway, New Jersey 08854-8087, USA.

出版信息

J Am Chem Soc. 2003 Dec 10;125(49):15087-92. doi: 10.1021/ja030320t.

Abstract

X-ray diffraction structures of the nucleosome core particle along with a variety of experiments are consistent with the idea that an important source of the free energy holding DNA to the superhelical ramp on the histone octamer surface is obtained from a relatively small amount of electrostatic neutralization of the DNA phosphate charge by positively charged histone groups, especially arginine residues. Here we present a theoretical analysis of a simple model that emphasizes the competition between the high degree of bending of the stiff DNA molecule required for its tight curvature on the histone octamer and the neutralization of the DNA phosphate charge by basic histone residues. Our calculation accounts for the strong influence of condensed counterions on the electrostatic interactions. We find that the minimum amount of free energy required to bend DNA into axial conformity with the superhelical ramp at physiological salt concentration can be provided by a scant 6% neutralization of the phosphate charge, in close correspondence to the stoichiometric neutralization of phosphate charge by the arginine side chain that intrudes into the inward-facing minor groove of each DNA double helical turn.

摘要

核小体核心颗粒的X射线衍射结构以及各种实验结果均与以下观点一致:将DNA固定在组蛋白八聚体表面超螺旋斜坡上的自由能的一个重要来源,是由带正电荷的组蛋白基团,特别是精氨酸残基,对DNA磷酸基团电荷进行相对少量的静电中和而获得的。在此,我们提出了一个简单模型的理论分析,该模型强调了在组蛋白八聚体上紧密弯曲刚性DNA分子所需的高度弯曲与碱性组蛋白残基对DNA磷酸基团电荷的中和之间的竞争。我们的计算考虑了凝聚抗衡离子对静电相互作用的强烈影响。我们发现,在生理盐浓度下,将DNA弯曲成与超螺旋斜坡轴向一致所需的最小自由能,可由仅6%的磷酸基团电荷中和来提供,这与侵入每个DNA双螺旋转弯向内小沟的精氨酸侧链对磷酸基团电荷的化学计量中和密切对应。

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