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闭合环状pSM1 DNA中扭转与缠绕变化耦合的能量学

Energetics of coupled twist and writhe changes in closed circular pSM1 DNA.

作者信息

Bauer W R, Ohtsubo H, Ohtsubo E, Benham C J

机构信息

Department of Microbiology, Health Sciences Center State University of New York, Stony Brook 11794-5222, USA.

出版信息

J Mol Biol. 1995 Oct 27;253(3):438-52. doi: 10.1006/jmbi.1995.0565.

Abstract

The extent of local denaturation in closed circular pSM1 DNA depends upon the linking difference, delta Lk, and the temperature, t. We have determined the denaturation profiles, using gel electrophoresis, over the ranges -37 < or = delta Lk < or = +16 and 25 degrees C < or = t < or = 65 degrees C. We have applied statistical mechanical methods to these data to evaluate the free energies of superhelix formation, of the twisting of single strands around each other, and of the initration of local denaturation. Because the complete nucleotide sequence is needed for this analysis, the complete pSM1 DNA sequence was determined and is reported here. The values of the free energy parameters found in this work agree closely with those previously obtained from experiments with pBR322 DNA, suggesting that there is little dependence of these values on the particular DNA sequence. We find the temperature dependence of these free energies by the appropriate statistical mechanical analysis of the temperature-dependent denaturation profiles produced by supercoiling. Calculations of the transition probability profiles indicate that the course of local denaturation in pSM1 DNA involves a complex competition among several sites of comparable susceptibility. This contrasts with the melting of pBR322 DNA, in which one principal site dominates. In both molecules the sites of predicted denaturation occur at or near regulatory regions, suggesting that duplex destabilization may be associated with their biological activities.

摘要

闭环pSM1 DNA中局部变性的程度取决于连接差ΔLk和温度t。我们使用凝胶电泳测定了在-37≤ΔLk≤+16以及25℃≤t≤65℃范围内的变性图谱。我们应用统计力学方法对这些数据进行分析,以评估超螺旋形成、单链相互缠绕以及局部变性起始的自由能。由于该分析需要完整的核苷酸序列,因此我们测定了完整的pSM1 DNA序列并在此报告。在这项工作中发现的自由能参数值与先前从pBR322 DNA实验中获得的值非常接近,这表明这些值对特定DNA序列的依赖性很小。我们通过对超螺旋产生的温度依赖性变性图谱进行适当的统计力学分析,得出了这些自由能对温度的依赖性。转变概率图谱的计算表明,pSM1 DNA中局部变性的过程涉及几个敏感性相当的位点之间的复杂竞争。这与pBR322 DNA的解链情况形成对比,在pBR322 DNA中一个主要位点起主导作用。在这两种分子中,预测变性的位点都出现在调控区域或其附近,这表明双链不稳定可能与其生物学活性有关。

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