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蛋白质介导的 DNA 环形成和在动态环境中的断裂。

Protein-mediated DNA loop formation and breakdown in a fluctuating environment.

机构信息

Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Phys Rev Lett. 2010 Jun 25;104(25):258103. doi: 10.1103/PhysRevLett.104.258103. Epub 2010 Jun 24.

Abstract

Living cells provide a fluctuating, out-of-equilibrium environment in which genes must coordinate cellular function. DNA looping, which is a common means of regulating transcription, is very much a stochastic process; the loops arise from the thermal motion of the DNA and other fluctuations of the cellular environment. We present single-molecule measurements of DNA loop formation and breakdown when an artificial fluctuating force, applied to mimic a fluctuating cellular environment, is imposed on the DNA. We show that loop formation is greatly enhanced in the presence of noise of only a fraction of k_{B}T, yet find that hypothetical regulatory schemes that employ mechanical tension in the DNA-as a sensitive switch to control transcription-can be surprisingly robust due to a fortuitous cancellation of noise effects.

摘要

活细胞提供了一个波动的、非平衡的环境,基因必须在其中协调细胞功能。DNA 环化是一种常见的转录调控方式,它在很大程度上是一个随机过程;环的出现是由于 DNA 的热运动和细胞环境的其他波动。当一个人工的波动力施加在 DNA 上,以模拟波动的细胞环境时,我们提出了对 DNA 环形成和断裂的单分子测量。我们发现,即使在只有 kB T 分数的噪声存在的情况下,环的形成也大大增强了,然而,我们发现,由于噪声效应的偶然抵消,假设的利用 DNA 中的机械张力作为控制转录的敏感开关的调控方案可以非常稳健。

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