Issue 8, 2024

Effect of local active fluctuations on structure and dynamics of flexible biopolymers

Abstract

Active fluctuations play a significant role in the structure and dynamics of biopolymers (e.g. chromatin and cytoskeletal proteins) that are instrumental in the functioning of living cells. For a large range of experimentally accessible length and time scales, these polymers can be represented as flexible chains that are subjected to spatially and temporally varying fluctuating forces. In this work, we introduce a mathematical framework that correlates the spatial and temporal patterns of the fluctuations to different observables that describe the dynamics and conformations of the polymer. We demonstrate the power of this approach by analyzing the case of a point fluctuation on the polymer with an exponential decay of correlation in time with a finite time constant. Specifically, we identify the length and time scale over which the behavior of the polymer exhibits a significant departure from the behavior of a Rouse chain and the range of impact of the fluctuation along the chain. Furthermore, we show that the conformation of the polymer retains the memory of the active fluctuation from earlier times. Altogether, this work sets the basis for understanding and interpreting the role of spatio-temporal patterns of fluctuations in the dynamics, conformation, and functionality of biopolymers in living cells.

Graphical abstract: Effect of local active fluctuations on structure and dynamics of flexible biopolymers

Supplementary files

Article information

Article type
Paper
Submitted
05 Nov 2023
Accepted
29 Dec 2023
First published
02 Jan 2024

Soft Matter, 2024,20, 1694-1701

Effect of local active fluctuations on structure and dynamics of flexible biopolymers

S. Dutta, A. Ghosh and A. J. Spakowitz, Soft Matter, 2024, 20, 1694 DOI: 10.1039/D3SM01491F

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