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首页> 外文期刊>ACS Macro Letters >Polymer Looping Is Controlled by Macromolecular Crowding, Spatial Confinement, and Chain Stiffness
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Polymer Looping Is Controlled by Macromolecular Crowding, Spatial Confinement, and Chain Stiffness

机译:聚合物环化由大分子拥挤,空间限制和链刚度控制

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We study by extensive computer simulations the looping characteristics of linear polymers with varying persistence length inside a spherical cavity in the presence of macromolecular crowding. For stiff chains, the looping probability and looping time reveal wildly oscillating patterns as functions of the chain length. The effects of crowding differ dramatically for flexible versus stiff polymers. While for flexible chains the looping kinetics is slowed down by the crowders, for stiffer chains the kinetics turns out to be either decreased or facilitated, depending on the polymer length. For severe confinement, the looping kinetics may become strongly facilitated by crowding. Our findings are of broad impact for DNA looping in the crowded and compartmentalized interior of living biological cells.
机译:我们通过广泛的计算机模拟研究在存在大分子拥挤的情况下球形腔内具有不同持久性长度的线性聚合物的环状特性。对于刚性链,循环概率和循环时间显示出随链长变化的剧烈振动模式。柔性和硬质聚合物的拥挤效应差异很大。对于拥挤的链,柔性链的动力学降低,而对于较硬的链,动力学的降低或促进取决于聚合物的长度。对于严重的限制,拥挤可能会大大促进循环动力学。我们的发现对活生物细胞的拥挤和分隔室内部的DNA循环产生广泛影响。

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