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多分散拥挤环境中刚性 DNA 的意外肿胀。

Unexpected Swelling of Stiff DNA in a Polydisperse Crowded Environment.

机构信息

Korea Institute for Advanced Study , Seoul 130-722, Korea.

出版信息

J Am Chem Soc. 2015 Sep 2;137(34):10970-8. doi: 10.1021/jacs.5b04531. Epub 2015 Aug 19.

Abstract

We investigate the conformations of DNA-like stiff chains, characterized by contour length (L) and persistence length (lp), in a variety of crowded environments containing monodisperse soft spherical (SS) and spherocylindrical (SC) particles, a mixture of SS and SC, and a milieu mimicking the composition of proteins in the Escherichia coli cytoplasm. The stiff chain, whose size modestly increases in SS crowders up to ϕ ≈ 0.1, is considerably more compact at low volume fractions (ϕ ≤ 0.2) in monodisperse SC particles than in a medium containing SS particles. A 1:1 mixture of SS and SC crowders induces greater chain compaction than the pure SS or SC crowders at the same ϕ, with the effect being highly nonadditive. We also discover a counterintuitive result that the polydisperse crowding environment, mimicking the composition of a cell lysate, swells the DNA-like polymer, which is in stark contrast to the size reduction of flexible polymers in the same milieu. Trapping of the stiff chain in a fluctuating tube-like environment created by large-sized crowders explains the dramatic increase in size and persistence length of the stiff chain. In the polydisperse medium, mimicking the cellular environment, the size of the DNA (or related RNA) is determined by L/lp. At low L/lp, the size of the polymer is unaffected, whereas there is a dramatic swelling at an intermediate value of L/lp. We use these results to provide insights into recent experiments on crowding effects on RNA and also make testable predictions.

摘要

我们研究了具有长度(L)和持久长度(lp)的 DNA 样刚性链在各种拥挤环境中的构象,这些环境包含单分散软球(SS)和球柱形(SC)颗粒、SS 和 SC 的混合物以及模拟大肠杆菌细胞质中蛋白质组成的环境。刚性链在 SS 拥挤剂中尺寸适度增加,直到 ϕ ≈ 0.1,但在单分散 SC 颗粒中体积分数(ϕ ≤ 0.2)较低时,比在含有 SS 颗粒的介质中更紧凑。SS 和 SC 拥挤剂的 1:1 混合物在相同的 ϕ 下比纯 SS 或 SC 拥挤剂引起更大的链紧凑化,其效果高度非加性。我们还发现了一个反直觉的结果,即模拟细胞裂解物组成的多分散拥挤环境会使 DNA 样聚合物膨胀,这与相同环境中柔性聚合物的尺寸减小形成鲜明对比。刚性链在由大尺寸拥挤剂形成的脉动管状环境中的捕获解释了刚性链尺寸和持久长度的显著增加。在多分散介质中,模拟细胞环境,DNA(或相关 RNA)的大小由 L/lp 决定。在低 L/lp 时,聚合物的大小不受影响,而在中间值 L/lp 时会出现剧烈膨胀。我们利用这些结果深入了解最近关于 RNA 拥挤效应的实验,并提出了可检验的预测。

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