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Bmal1-deficient mouse fibroblast cells do not provide premature cellular senescence in vitro.

Yasukazu NakahataShiori YasukawaFiqri Dizar KhaidizarShigeki ShimbaTakaaki MatsuiYasumasa Bessho
Published in: Chronobiology international (2018)
Bmal1 is a core circadian clock gene. Bmal1-/- mice show disruption of the clock and premature aging phenotypes with a short lifespan. However, little is known whether disruption of Bmal1 leads to premature aging at cellular level. Here, we established primary mouse embryonic fibroblast (MEF) cells derived from Bmal1-/- mice and investigated its effects on cellular senescence. Unexpectedly, Bmal1-/- primary MEFs that showed disrupted circadian oscillation underwent neither premature replicative nor stress-induced cellular senescence. Our results therefore uncover that Bmal1 is not required for in vitro cellular senescence, suggesting that circadian clock does not control in vitro cellular senescence.
Keyphrases
  • stress induced
  • dna damage
  • endothelial cells
  • induced apoptosis
  • gene expression
  • mass spectrometry
  • metabolic syndrome
  • signaling pathway
  • genome wide
  • copy number
  • skeletal muscle
  • single molecule
  • wound healing