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Tension on dsDNA bound to ssDNA-RecA filaments may play an important role in driving efficient and accurate homology recognition and strand exchange

机译:在双链DNa张力必将单链DNa的Reca长丝可以起到推动高效准确的同源性的认可和链交换中起重要作用

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摘要

It is well known that during homology recognition and strand exchange the double stranded DNA (dsDNA) in DNA/RecA filaments is highly extended, but the functional role of the extension has been unclear. We present an analytical model that calculates the distribution of tension in the extended dsDNA during strand exchange. The model suggests that the binding of additional dsDNA base pairs to the DNA/RecA filament alters the tension in dsDNA that was already bound to the filament, resulting in a non-linear increase in the mechanical energy as a function of the number of bound base pairs. This collective mechanical response may promote homology stringency and underlie unexplained experimental results.
机译:众所周知,在同源性识别和链交换过程中,DNA / RecA细丝中的双链DNA(dsDNA)高度延伸,但是延伸的功能作用尚不清楚。我们提出了一种分析模型,该模型计算链交换过程中延伸的dsDNA中的张力分布。该模型表明,其他dsDNA碱基对与DNA / RecA细丝的结合会改变已与细丝结合的dsDNA中的张力,从而导致机械能随结合碱基数的增加而非线性增加对。这种集体的机械反应可能会促进同源性的严格性,并成为无法解释的实验结果的基础。

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