Issue 3, 2015

Kinetics of polymer looping with macromolecular crowding: effects of volume fraction and crowder size

Abstract

The looping of polymers such as DNA is a fundamental process in the molecular biology of living cells, whose interior is characterised by a high degree of molecular crowding. We here investigate in detail the looping dynamics of flexible polymer chains in the presence of different degrees of crowding. From the analysis of the looping–unlooping rates and the looping probabilities of the chain ends we show that the presence of small crowders typically slows down the chain dynamics but larger crowders may in fact facilitate the looping. We rationalise these non-trivial and often counterintuitive effects of the crowder size on the looping kinetics in terms of an effective solution viscosity and standard excluded volume. It is shown that for small crowders the effect of an increased viscosity dominates, while for big crowders we argue that confinement effects (caging) prevail. The tradeoff between both trends can thus result in the impediment or facilitation of polymer looping, depending on the crowder size. We also examine how the crowding volume fraction, chain length, and the attraction strength of the contact groups of the polymer chain affect the looping kinetics and hairpin formation dynamics. Our results are relevant for DNA looping in the absence and presence of protein mediation, DNA hairpin formation, RNA folding, and the folding of polypeptide chains under biologically relevant high-crowding conditions.

Graphical abstract: Kinetics of polymer looping with macromolecular crowding: effects of volume fraction and crowder size

Supplementary files

Article information

Article type
Paper
Submitted
07 Sep 2014
Accepted
16 Oct 2014
First published
20 Oct 2014
This article is Open Access
Creative Commons BY license

Soft Matter, 2015,11, 472-488

Author version available

Kinetics of polymer looping with macromolecular crowding: effects of volume fraction and crowder size

J. Shin, A. G. Cherstvy and R. Metzler, Soft Matter, 2015, 11, 472 DOI: 10.1039/C4SM02007C

This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. You can use material from this article in other publications without requesting further permissions from the RSC, provided that the correct acknowledgement is given.

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