Shin Jaeoh, Cherstvy Andrey G, Metzler Ralf
Institute for Physics and Astronomy, University of Potsdam, 14476 Potsdam-Golm, Germany.
Max-Planck Institute for the Physics of Complex Systems, 01187 Dresden, Germany.
ACS Macro Lett. 2015 Feb 17;4(2):202-206. doi: 10.1021/mz500709w. Epub 2015 Jan 21.
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.
我们通过广泛的计算机模拟研究了在存在大分子拥挤效应的情况下,具有不同持久长度的线性聚合物在球形腔内的环化特性。对于刚性链,环化概率和环化时间呈现出随链长剧烈振荡的模式。柔性聚合物和刚性聚合物的拥挤效应差异显著。对于柔性链,拥挤剂会减缓环化动力学,而对于较刚性的链,动力学结果要么降低要么加快,这取决于聚合物长度。在强限制条件下,拥挤效应可能会极大地促进环化动力学。我们的发现对活细胞拥挤且分隔的内部环境中的DNA环化具有广泛影响。