生物
DNA损伤
细胞生物学
拉明
内质网
DNA修复
DNA
癌症研究
核心
遗传学
作者
Guilherme Pedreira de Freitas Nader,Sonia Agüera‐González,Fiona Routet,Matthieu Gratia,Mathieu Maurin,Valeria Cancila,Clotilde Cadart,Andrea Palamidessi,Rodrigo Nalio Ramos,Mabel San,Matteo Gentili,Ayako Yamada,Alice Williart,Catalina Lodillinsky,Emilie Lagoutte,Catherine Villard,Jean‐Louis Viovy,Claudio Tripodo,Jérôme Galon,Giorgio Scita,Nicolas Manel,Philippe Chavrier,Matthieu Piel
出处
期刊:Cell
[Elsevier]
日期:2021-09-01
卷期号:184 (20): 5230-5246.e22
被引量:149
标识
DOI:10.1016/j.cell.2021.08.035
摘要
Although mutations leading to a compromised nuclear envelope cause diseases such as muscular dystrophies or accelerated aging, the consequences of mechanically induced nuclear envelope ruptures are less known. Here, we show that nuclear envelope ruptures induce DNA damage that promotes senescence in non-transformed cells and induces an invasive phenotype in human breast cancer cells. We find that the endoplasmic reticulum (ER)-associated exonuclease TREX1 translocates into the nucleus after nuclear envelope rupture and is required to induce DNA damage. Inside the mammary duct, cellular crowding leads to nuclear envelope ruptures that generate TREX1-dependent DNA damage, thereby driving the progression of in situ carcinoma to the invasive stage. DNA damage and nuclear envelope rupture markers were also enriched at the invasive edge of human tumors. We propose that DNA damage in mechanically challenged nuclei could affect the pathophysiology of crowded tissues by modulating proliferation and extracellular matrix degradation of normal and transformed cells.
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