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在DNA片段中观察到的一种异常电光效应及其与弯曲DNA相关的永久电矩的明显关系。

An unusual electrooptical effect observed for DNA fragments and its apparent relation to a permanent electric moment associated with bent DNA.

作者信息

Antosiewicz J, Porschke D

机构信息

Max-Planck-Institut für biophysikalische Chemie, Göttingen, F.R.G.

出版信息

Biophys Chem. 1989 Mar;33(1):19-30. doi: 10.1016/0301-4622(89)80003-1.

Abstract

Dichroism decay curves of DNA fragments with chain lengths in the range of 179-256 bp show an amplitude inversion suggesting the existence of a positive dichroism component, when these fragments are dissolved at monovalent salt concentrations above approx. 5 mM and are exposed to field pulses with amplitudes and/or lengths above critical values. At the critical values, the unusual dichroism is reflected by an apparent acceleration of the decay curves, which can be fitted by single exponentials with time constants much below the values expected from the DNA contour lengths. The critical pulse amplitudes and lengths decrease with increasing DNA chain length and increasing salt concentration. The experimental data are consistent with results obtained by hydrodynamic and electric model calculations on smoothly bent DNA double helices. The DNA is represented by a string of overlapping beads, which is used to calculate the rotational diffusion tensor and the center of diffusion. The distribution of phosphate charges is asymmetric with respect to this center and thus gives rise to a substantial permanent dipole moment. The magnitude of this dipole moment is calculated as a function of DNA curvature and is used together with experimental values of polarizabilities for simulations of dichroism decay curves. The curves simulated for bent DNA show the same phenomenon as observed experimentally. The ionic strength dependence of the unusual dichroism is explained by an independently observed strong decrease of the polarizability with increasing salt concentration. The field strength dependence is probably due to field-induced bending of double helices driven by the change of the dipole moment. Although our calculations are on rigid models of DNA and thus any flexibility of the double helix has not been considered, we conclude that the essential part of our experimental results can be explained by our model.

摘要

链长在179 - 256碱基对范围内的DNA片段的二色性衰减曲线显示出幅度反转,这表明存在一个正二色性成分,当这些片段溶解在约5 mM以上的单价盐浓度中,并受到幅度和/或长度高于临界值的场脉冲作用时。在临界值时,异常的二色性表现为衰减曲线明显加速,可用单指数拟合,其时间常数远低于根据DNA轮廓长度预期的值。临界脉冲幅度和长度随DNA链长增加和盐浓度增加而减小。实验数据与对平滑弯曲的DNA双螺旋进行的流体动力学和电模型计算结果一致。DNA由一串重叠的珠子表示,用于计算旋转扩散张量和扩散中心。磷酸根电荷的分布相对于该中心不对称,因此产生了一个相当大的永久偶极矩。计算该偶极矩的大小作为DNA曲率的函数,并与极化率的实验值一起用于模拟二色性衰减曲线。为弯曲DNA模拟的曲线显示出与实验观察到的相同现象。异常二色性对离子强度的依赖性可通过独立观察到的极化率随盐浓度增加而强烈降低来解释。场强依赖性可能是由于偶极矩变化驱动双螺旋的场致弯曲。尽管我们的计算是基于DNA的刚性模型,因此未考虑双螺旋的任何柔韧性,但我们得出结论,我们实验结果的主要部分可以用我们的模型来解释。

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