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基于对称性的染色质动力学驱动力分类。

Symmetry-based classification of forces driving chromatin dynamics.

机构信息

Center for Soft Matter Research, Department of Physics, New York University, New York, NY 10003, USA.

出版信息

Soft Matter. 2022 Nov 2;18(42):8134-8146. doi: 10.1039/d2sm00840h.

Abstract

Chromatin - the functional form of DNA in the cell - exists in the form of a polymer immersed in a nucleoplasmic fluid inside the cell nucleus. Both chromatin and nucleoplasm are subject to active forces resulting from local biological processes. This activity leads to non-equilibrium phenomena, affecting chromatin organization and dynamics, yet the underlying physics is far from understood. Here, we expand upon a previously developed two-fluid model of chromatin and nucleoplasm by considering three types of activity in the form of force dipoles - two with both forces of the dipole acting on the same fluid (either polymer or nucleoplasm) and a third, with two forces pushing chromatin and solvent in opposite directions. We find that this latter type results in the most significant flows, dominating over most length scales of interest. Due to the friction between the fluids and their viscosity, we observe emergent screening length scales in the active flows of this system. We predict that the presence of different activity types and their relative strengths can be inferred from observing the power spectra of hydrodynamic fluctuations in the chromatin and the nucleoplasm.

摘要

染色质 - 细胞中 DNA 的功能形式 - 以聚合物的形式存在于细胞核内的核质液体中。染色质和核质都受到来自局部生物过程的主动力的影响。这种活性导致非平衡现象,影响染色质的组织和动力学,但潜在的物理原理还远未被理解。在这里,我们通过考虑三种形式的力偶(两个力偶的力都作用于同一流体(聚合物或核质),以及第三个力偶的力将染色质和溶剂推向相反方向),扩展了之前开发的染色质和核质两流体模型。我们发现,后一种类型导致了最显著的流动,在大多数感兴趣的长度尺度上占主导地位。由于两种流体之间的摩擦及其粘性,我们在该系统的主动流动中观察到了涌现的屏蔽长度尺度。我们预测,可以通过观察染色质和核质中流体力学波动的功率谱来推断不同活性类型及其相对强度的存在。

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