RNA polymerase II is a polar roadblock to a progressing DNA fork

T Taryn M. Kay J James T. Inman L Lucyna Lubkowska T Tung T. Le J Jin Qian P Porter M. Hall S Sahil Batra D Dirk Remus D Dong Wang M Mikhail Kashlev M Michelle D. Wang

Abstract

Abstract Transcription–replication conflicts threaten genome stability. Although head-on conflicts are more detrimental and prone to R-loop formation than co-directional conflicts, the cause of this RNA polymerase roadblock polarity remains unclear, and proposed structures of these R-loops are speculative. Here, we examine the Pol II roadblock to a DNA fork advanced by mechanical unzipping to mimic replisome progression. We found that a head-on Pol II with a minimal transcript resists disruption more strongly, revealing inherent polarity. Moreover, an elongating Pol II with a long RNA transcript becomes an even more potent roadblock, mediated by RNA–DNA hybrid formation. Surprisingly, when a Pol II collides with the DNA fork head-on and becomes backtracked, a hybrid can form in front of Pol II, creating a topological lock that traps Pol II at the fork. Our findings capture the basal properties of Pol II interactions with a DNA fork, revealing significant implications for transcription–replication conflicts.

Article Details

Volume / Issue Vol. 16, Issue 1
Published September 29, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

T

Taryn M. Kay

J

James T. Inman

L

Lucyna Lubkowska

T

Tung T. Le

J

Jin Qian

P

Porter M. Hall

S

Sahil Batra

D

Dirk Remus

D

Dong Wang

M

Mikhail Kashlev

M

Michelle D. Wang