重编程
细胞生物学
转录因子
生物
T细胞
细胞
转录组
抄写(语言学)
转录调控
基因表达调控
基因表达
机械转化
TCIRG1公司
基因
DNA
细胞分化
记忆T细胞
信号转导
作者
Jérémy Postat,Mauricio Merino,Angela R. Mingarelli,Aysha Cerf,Aanya Bhagrath,Dhanesh Patel,Connie Shen,Johanna Brodbeck,Pouria Tirgar,Dakota Rogers,Jules Blanc,Thiviya Jeyakumar,Caitlin Schneider,Shana M. Coley,N Giannetti,Taylor A. DePauw,Johannes Textor,Allen Ehrlicher,Stephen C. Jameson,Reza Sharif-Naeini
标识
DOI:10.1038/s41590-026-02581-9
摘要
Cell migration and strategic positioning within tissues is critical for the rapid mobilization of a T cell response. T cells must remain motile in both lymphoid and nonlymphoid tissues, which vary widely in mechanical properties such as stiffness. Here we showed that activated T cells sensed mechanical cues and responded with changes in cell morphology, nuclear envelope composition and initiation of DNA repair to protect their genomic material from force-mediated damage. Increased mechanical input also drove the transcriptional reprogramming of activated T cells, including changes in many of the core genes shared by tissue-resident memory T cells across diverse tissues, by modulating the expression of the tissue-resident memory T cell-associated transcription factors Klf2, Runx3 and Hic1. Thus, mechanosensing by activated T cells impacted T cell fate, promoting a transcriptional program associated with tissue residency.
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