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

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NIAID Data Ecosystem2026-05-10 收录
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https://www.ncbi.nlm.nih.gov/sra/SRP568142
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Germline mutations in the chromatin remodelling protein ATRX cause a severe developmental disorder associated with a-thalassemia. In addition, ATRX is amongst the twenty genes most frequently mutated in cancer. How ATRX mutations alter gene expression remains unclear. Using the a-globin locus as a model, here we show that ATRX deficiency downregulates a-globin in a subset of cells exhibiting DNA damage. A G-rich repeat at the a-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 by a long-range G-rich repeat. Overall design: To determine ATRX binding pattern during erythroid differentiation, the immortalised erythroid progenitor cell line HUDEP-2 were differentiated and samples from different differentiation stages were collected for ATRX ChIP-seq.
创建时间:
2026-01-14
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