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首页> 外文期刊>The Journal of Chemical Physics >THEORY OF THE INFLUENCE OF END CONDITIONS ON SELF-CONTACT IN DNA LOOPS
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THEORY OF THE INFLUENCE OF END CONDITIONS ON SELF-CONTACT IN DNA LOOPS

机译:末端条件对DNA环中自洽影响的理论

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摘要

Explicit solutions of the equations of Kirchhoff's theory of elastic rods are employed to derive properties of the tertiary structure of a looped segment of DNA that is subject to geometric constraints imposed at its end points by bound proteins. In appropriate circumstances small changes in such boundary data cause a nearly planar loop to undergo a continuous and reversible transition that can be described as a 180 degrees rotation taking the loop from an uncrossed to a singly crossed structure in which sequentially separated base pairs are brought into proximity. Expressions are derived relating points and angles of crossing to end conditions, and results are presented that facilitate the calculation of changes in elastic energy during such transitions. (C) 1995 American Institute of Physics. [References: 19]
机译:基尔霍夫弹性棒理论的方程式的显式解用于推导DNA环状片段的三级结构的性质,该环状片段受结合蛋白质在其末端施加的几何约束。在适当的情况下,此类边界数据的细微变化会导致近乎平面的环路经历连续且可逆的过渡,这可以描述为180度旋转,从而使环路从非交叉结构变为单交叉结构,在该结构中依次引入碱基对接近。得出了与端点条件相交的点和角度的表达式,并给出了有助于计算这种过渡过程中弹性能变化的结果。 (C)1995年美国物理研究所。 [参考:19]

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