首页> 美国卫生研究院文献>Biophysical Journal >Parametrization of direct and soft steric-undulatory forces between DNA double helical polyelectrolytes in solutions of several different anions and cations.
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Parametrization of direct and soft steric-undulatory forces between DNA double helical polyelectrolytes in solutions of several different anions and cations.

机译:在多个不同的阴离子和阳离子溶液中DNA双螺旋聚电解质之间的直接和软空间波动力的参数化。

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摘要

Directly measured forces between DNA helices in ordered arrays have been reduced to simple force coefficients and mathematical expressions for the interactions between pairs of molecules. The tabulated force parameters and mathematical expressions can be applied to parallel molecules or, by transformation, to skewed molecules of variable separation and mutual angle. This "toolbox" of intermolecular forces is intended for use in modelling molecular interactions, assembly, and conformation. The coefficients characterizing both the exponential hydration and the electrostatic interactions depend strongly on the univalent counterion species in solution, but are only weakly sensitive to anion type and temperature (from 5 to 50 degrees C). Interaction coefficients for the exponentially varying hydration force seen at spacings less than 10 to 15 A between surfaces are extracted directly from pressure versus interaxial distance curves. Electrostatic interactions are only observed at larger spacings and are always coupled with configurational fluctuation forces that result in observed exponential decay lengths that are twice the expected Debye-Huckel length. The extraction of electrostatic force parameters relies on a theoretical expression describing steric forces of molecules "colliding" through soft exponentially varying direct interactions.
机译:有序阵列中的DNA螺旋之间的直接测量力已减少为简单的力系数和分子对之间相互作用的数学表达式。列表化的力参数和数学表达式可以应用于平行分子,也可以通过转换应用于可变间距和互角的倾斜分子。分子间力的“工具箱”旨在用于建模分子相互作用,组装和构象。表征指数水合和静电相互作用的系数在很大程度上取决于溶液中的一价抗衡离子种类,但仅对阴离子类型和温度(5至50摄氏度)敏感。直接从压力与轴间距离曲线中提取在表面之间的间距小于10至15 A时看到的指数变化水合作用的相互作用系数。静电相互作用仅在较大的间距处观察到,并始终与构型波动力耦合,导致观察到的指数衰减长度是预期的Debye-Huckel长度的两倍。静电力参数的提取依赖于一个理论表达式,该表达式描述了通过软指数变化的直接相互作用而“碰撞”的分子的空间力。

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