端粒
端粒酶
谢尔特林
细胞生物学
衰老
生物
遗传学
DNA
转录因子
DNA结合蛋白
基因
作者
Alessio Lanna,Bruno Vaz,Clara D’Ambra,Salvatore Valvo,Claudia Vuotto,Valerio Chiurchiù,Oliver Devine,Massimo Sanchez,Giovanna Borsellino,Arne N. Akbar,Marco De Bardi,Derek W. Gilroy,Michael L. Dustin,Brendan Blumer,Michael Karin
标识
DOI:10.1038/s41556-022-00991-z
摘要
The common view is that T lymphocytes activate telomerase to delay senescence. Here we show that some T cells (primarily naïve and central memory cells) elongated telomeres by acquiring telomere vesicles from antigen-presenting cells (APCs) independently of telomerase action. Upon contact with these T cells, APCs degraded shelterin to donate telomeres, which were cleaved by the telomere trimming factor TZAP, and then transferred in extracellular vesicles at the immunological synapse. Telomere vesicles retained the Rad51 recombination factor that enabled telomere fusion with T-cell chromosome ends lengthening them by an average of ~3,000 base pairs. Thus, there are antigen-specific populations of T cells whose ageing fate decisions are based on telomere vesicle transfer upon initial contact with APCs. These telomere-acquiring T cells are protected from senescence before clonal division begins, conferring long-lasting immune protection. Lanna and colleagues discover extracellular vesicle-mediated transfer of telomeres from antigen-presenting cells to T cells, which enables elongation of chromosomes, protection against replicative senescence and long-term immune defence.
科研通智能强力驱动
Strongly Powered by AbleSci AI