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Control of replication and gene expression by ADP-ribosylation of DNA in Mycobacterium tuberculosis

delete2025-05-08
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OA
AI
R
Rachel E. Butler
M
M. Schuller
J
Jaiswal, Ritu
J
Jayanta Mukhopadhyay
J
Jim Barber
S
Suzie Hingley‐Wilson
E
Emily Wasson
A
Alex Couto Alves
I
Ivan Ahel *
G
Graham R. Stewart *
DOI:10.1038/s44318-025-00451-ydelete
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Abstract

Abstract

En 中文
Mycobacterium tuberculosis maintains long-term infections characterised by the need to regulate growth and adapt to contrasting in vivo environments. Here we show that M. tuberculosis complex bacteria utilise reversible ADP-ribosylation of single-stranded DNA as a mechanism to coordinate stationary phase growth with transcriptional adaptation. The DNA modification is controlled by DarT, an ADP-ribosyltransferase, which adds ADP-ribose to thymidine, and DarG, which enzymatically removes this base modification. Using darG-knockdown M. bovis BCG, we map the first DNA ADP-ribosylome from any organism. We show that inhibition of replication by DarT is reversible and accompanied by extensive ADP-ribosylation at the origin of replication (OriC). In addition, we observe ADP-ribosylation across the genome and demonstrate that ADP-ribose-thymidine alters the transcriptional activity of M. tuberculosis RNA polymerase. Furthermore, we demonstrate that during stationary phase, DarT-dependent ADP-ribosylation of M. tuberculosis DNA is required to optimally induce expression of the Zur regulon, including the ESX-3 secretion system and multiple alternative ribosome proteins. Thus, ADP-ribosylation of DNA can provide a mechanistic link through every aspect of DNA biology from replication to transcription to translation.
Keywords:
ADP-ribosylation
PARP
DNA Modification
Transcription Regulation
ADPr-Seq

Journal

EMBO Journal cover
EMBO Journal
IF:
8.3
Papers:
1.3W
Citations:
6.3W

Organization

U
Univ Surrey
Scholars:
405
Papers: 295
Citations: 111
U
Univ Oxford
Scholars:
3.4K
Papers: 1.9K
Citations: 986
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