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用不同大小的拥挤物调节半柔性链中的结丰度:DNA 链的蒙特卡罗研究。

Tuning knot abundance in semiflexible chains with crowders of different sizes: a Monte Carlo study of DNA chains.

机构信息

SISSA, International School for Advanced Studies, via Bonomea 265, I-34136 Trieste, Italy.

Institut de Physique des Systèmes Biologiques, Ecole Polytechnique Fédérale de Lausanne, BSP, CH-1015 Lausanne, Switzerland.

出版信息

Soft Matter. 2016 Aug 10;12(32):6708-15. doi: 10.1039/c6sm01327a.

Abstract

We use stochastic simulation techniques to sample the conformational space of linear semiflexible polymers in a crowded medium and study how the knotting properties depend on the crowder size and concentration. The abundance of physical knots in the chains, which for definiteness we model on 10 kb long DNA filaments, is shown to have a non-monotonic, unimodal dependence on the colloid diameter, dc. The maximum incidence of knots occurs when dc is about equal to half of the gyration radius of the isolated chain. The degree of enhancement of knots grows rapidly with the solution density and can be very conspicuous relative to the case of isolated chains with no crowders. For instance, at 30% volume fraction the relative increase is more than fourfold. This dramatic enhancement is shown to originate from the depletion-induced chain compaction over multiple and concurring length scales. The same effect accounts for the variations of the knot length that accompany the changes in knotting probability. The findings suggest that crowded media could be viably used as a passive physical means for controlling and modulating the incidence and length of knots in DNA and other types of semiflexible polymers.

摘要

我们使用随机模拟技术来采样线性半柔性聚合物在拥挤介质中的构象空间,并研究了打结性质如何依赖于拥挤物的大小和浓度。在链中存在物理结的丰富程度,我们明确地将其建模为 10kb 长的 DNA 细丝,与胶体直径 dc 呈非单调的单峰依赖性。当 dc 大约等于孤立链的回转半径的一半时,结的发生率达到最大值。结的增强程度随溶液密度的增加而迅速增加,并且相对于没有拥挤物的孤立链的情况可以非常明显。例如,在 30%的体积分数下,相对增加超过四倍。这种显著的增强源于在多个和并发的长度尺度上由耗尽诱导的链紧缩。同样的效应解释了伴随打结概率变化的结长度的变化。这些发现表明,拥挤介质可以作为一种被动的物理手段,用于控制和调节 DNA 和其他类型的半柔性聚合物中的结的发生率和长度。

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