4.8 Article

ETS1 acts as a regulator of human healthy aging via decreasing ribosomal activity

Journal

SCIENCE ADVANCES
Volume 8, Issue 17, Pages -

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciadv.abf2017

Keywords

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Funding

  1. National Key R&D Program of China [2018YFC2000400, 2018YFE0203700]
  2. Key Research Program [KFZD-SW-221]
  3. Key Research Program of Frontiers Science [QYZDB-SSW-SMC020]
  4. Strategic Priority Research Program [XDPB17]
  5. West Light Foundation of the Chinese Academy of Sciences
  6. National Natural Science Foundation of China [82071595, 91749114, 81671404, 81701394, 31460290]
  7. Yunnan Applied Basic Research Project [2017FA038, 2018FB121, 2019FB094, 202101AT070299, 202101AS070058, 202101AS070314]
  8. Science and Technology Leading Talent Program of the Spring City (Kunming)
  9. National Clinical Research Center for Geriatric Disorders (Xiangya Hospital) [2021LNJJ03]
  10. Yunling Scholar of Yunnan Province
  11. Youth Innovation Promotion Association

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Through transcriptome analysis of long-lived individuals, it was found that the ribosome pathway is significantly down-regulated, likely controlled by the transcription factor ETS1, which can regulate the expression of ribosomal protein genes to reduce cellular senescence.
Adaptation to reduced energy production during aging is a fundamental issue for maintaining healthspan or prolonging life span. Currently, however, the underlying mechanism in long-lived people remains poorly understood. Here, we analyzed transcriptomes of 193 long-lived individuals (Ws) and 86 spouses of their children from two independent Chinese longevity cohorts and found that the ribosome pathway was significantly down-regulated in LLIs. We found that the down-regulation is likely controlled by ETS1(ETS proto-oncogene 1), a transcription factor down-regulated in LLIs and positively coexpressed with most ribosomal protein genes (RPGs). Functional assays showed that ETS1 can bind to RPG promoters, while ETS1 knockdown reduces RPG expression and alleviates cellular senescence in human dermal fibroblast (HDF) and embryonic lung fibroblast (IMR-90) cells. As protein synthesis/turnover in ribosomes is an energy-intensive cellular process, the decline in ribosomal biogenesis governed by ETS1 in certain female LLIs may serve as an alternative mechanism to achieve energy-saving and healthy aging.

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