Slow chromatin dynamics enhances promoter accessibility to transcriptional condensates

Author:

Yamamoto Tetsuya12ORCID,Sakaue Takahiro3,Schiessel Helmut4

Affiliation:

1. Institute for Chemical Reaction Design and Discovery, Hokkaido University, Kita 21, Nishi 10, Kita-ku, Sapporo 001-0021, Japan

2. PRESTO, Japan Science and Technology Agency (JST), 4-1-8, Honcho, Kawaguchi, Saitama 332-0012, Japan

3. Department of Physical Sciences, Aoyama Gakuin University, 5-10-1, Fuchinobe,Chuo-ku, Sagamihara, Kanagawa 252-5258, Japan

4. Cluster of Excellence Physics of Life, TU Dresden, Dresden 01062, Germany

Abstract

Abstract Enhancers are DNA sequences at a long genomic distance from target genes. Recent experiments suggest that enhancers are anchored to the surfaces of condensates of transcription machinery and that the loop extrusion process enhances the transcription level of their target genes. Here, we theoretically study the polymer dynamics driven by the loop extrusion of the linker DNA between an enhancer and the promoter of its target gene to calculate the contact probability of the promoter to the transcription machinery in the condensate. Our theory predicts that when the loop extrusion process is active, the contact probability increases with increasing linker DNA length. This finding reflects the fact that the relaxation time, with which the promoter stays in proximity to the surface of the transcriptional condensate, increases as the length of the linker DNA increases. This contrasts the equilibrium case for which the contact probability between the promoter and the transcription machineries is smaller for longer linker DNA lengths.

Funder

JST

PRESTO

JSPS

MEXT

Deutsche Forschungsgemeinschaft

Publisher

Oxford University Press (OUP)

Subject

Genetics

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