DNA supercoiling-mediated G4/R-loop formation tunes transcription by controlling the access of RNA polymerase

J Jihee Hwang C Chun-Ying Lee S Sumitabha Brahmachari (Center for Theoretical Biological Physics) S Shubham Tripathi T Tapas Paul H Huijin Lee A Alanna Craig T Taekjip Ha S Sua Myong

Abstract

Abstract RNA polymerase (RNAP) is a processive motor that modulates DNA supercoiling and reshapes DNA structures. The feedback loop between the DNA topology and transcription remains elusive. Here, we investigate the impact of potential G-quadruplex forming sequences (PQS) on transcription in response to DNA supercoiling. We find that supercoiled DNA increases transcription frequency 10-fold higher than relaxed DNA, which lead to an abrupt formation of G-quadruplex (G4) and R-loop structures. Moreover, the stable R-loop relieves topological strain, facilitated by G4 formation. The cooperative formation of G4/R-loop effectively alters the DNA topology around the promoter and suppresses transcriptional activity by impeding RNAP loading. These findings highlight negative supercoiling as a built-in spring that triggers a transcriptional burst followed by a rapid suppression upon G4/R-loop formation. This study sheds light on the intricate interplay between DNA topology and structural change in transcriptional regulation, with implications for understanding gene expression dynamics.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 09, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

J

Jihee Hwang

C

Chun-Ying Lee

S

Sumitabha Brahmachari

Center for Theoretical Biological Physics

S

Shubham Tripathi

T

Tapas Paul

H

Huijin Lee

A

Alanna Craig

T

Taekjip Ha

S

Sua Myong