ATRX loss couples genome instability at a G-rich repeat to dysregulation of human alpha-globin expression

Y Yuqi Shen K Kinam Gupta S Sue Mei Tan-Wong S Sean Wen C Christopher A. Fisher L Liezel Tamon N Nicholas J. Proudfoot R Richard J. Gibbons D Douglas R. Higgs

Abstract

Abstract Germline mutations in the chromatin remodelling protein ATRX cause a severe developmental disorder associated with α-thalassemia. In addition, ATRX is amongst the twenty genes most frequently mutated in cancer. How ATRX mutations alter gene expression remains unclear. Using the α-globin locus as a model, here we show that ATRX deficiency downregulates α-globin in a subset of cells exhibiting DNA damage. A G-rich repeat at the α-globin locus serves as a potential site of G-quadruplex formation and DNA damage. ATRX binds this repeat co-transcriptionally, and its loss increases R-loop accumulation at this site, leading to local DNA damage and transcriptional disruption in cis . Deletion of this repeat abolishes this effect, while targeted DNA damage reinstates it. These findings reveal a mechanism linking ATRX’s role in genome stability to transcriptional regulation and uncover a molecular basis of human genetic disease mediated via a distal G-rich repeat.

Article Details

Volume / Issue Vol. 17, Issue 1
Published February 14, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

Y

Yuqi Shen

K

Kinam Gupta

S

Sue Mei Tan-Wong

S

Sean Wen

C

Christopher A. Fisher

L

Liezel Tamon

N

Nicholas J. Proudfoot

R

Richard J. Gibbons

D

Douglas R. Higgs