4.7 Article

Proteostasis failure and cellular senescence in long-term cultured postmitotic rat neurons

期刊

AGING CELL
卷 19, 期 1, 页码 -

出版社

WILEY
DOI: 10.1111/acel.13071

关键词

mTOR; postmitotic neurons; proteostasis failure; senescence

资金

  1. Japan Society for the Promotion of Science [15K14449]
  2. Grants-in-Aid for Scientific Research [15K14449] Funding Source: KAKEN

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Cellular senescence, a stress-induced irreversible cell cycle arrest, has been defined for mitotic cells and is implicated in aging of replicative tissues. Age-related functional decline in the brain is often attributed to a failure of protein homeostasis (proteostasis), largely in postmitotic neurons, which accordingly is a process distinct by definition from senescence. It is nevertheless possible that proteostasis failure and cellular senescence have overlapping molecular mechanisms. Here, we identify postmitotic cellular senescence as an adaptive stress response to proteostasis failure. Primary rat hippocampal neurons in long-term cultures show molecular changes indicative of both senescence (senescence-associated beta-galactosidase, p16, and loss of lamin B1) and proteostasis failure relevant to Alzheimer's disease. In addition, we demonstrate that the senescent neurons exhibit resistance to stress. Importantly, treatment of the cultures with an mTOR antagonist, protein synthesis inhibitor, or chemical compound that reduces the amount of protein aggregates relieved the proteotoxic stresses as well as the appearance of senescence markers. Our data propose mechanistic insights into the pathophysiological brain aging by establishing senescence as a primary cell-autonomous neuroprotective response.

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