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◆ Nature Communications2026-08-29· DNA damage

Persistent chromatin alterations and gene expression reprogramming follow widespread DNA damage in glioblastoma

Aram S. Modrek, Keerthivasan Raanin Chandradoss, Catherine Do, Ravesanker Ezhilarasan, Theodore Sakellaropoulos, Jerome M. Karp, Yingwen Ding, Ze-Yan Zhang, Maria L. G. Quiloan, Melanie Graciani, Giulia Cova, Jennifer E. Phillips‐Cremins, Erik P. Sulman, Jane A. Skok

原始摘要(英文原文)· Original abstract
Abstract DNA damage from routine cellular processes or exogenous insults can have a lasting impact on gene regulation beyond genetic mutations. The prevailing paradigm for the consequences of DNA damage repair revolves around restoration of the original genetic sequence, but long-term changes in chromatin configuration, gene expression and DNA modifications have not been analyzed. We introduced numerous, simultaneous Cas9-mediated DNA double strand breaks (DSBs) at defined locations in human glioblastoma cells and tracked both non-genetic and genetic alterations over time. Megabase-scale genomic alterations that endured two weeks after the initial damage were detected, involving a shift from transiently increased intra-TAD interactions to persistent long range cis and trans contacts, alterations in gene-expression and associated large structural variations. These findings reveal that widespread DNA damage, such as chemotherapy or radiotherapy, can trigger long-term genetic and non-genetic modifications which alter cellular function and may impact tumor outcome and the emergence of resistant cells.
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Persistent chromatin alterations and gene expression reprogramming follow widespread DNA damage in glioblastoma — 科研速览 Science Skim