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CDK4/6 inhibitor-mediated cell overgrowth triggers osmotic and replication stress to promote senescence

  • Lisa Crozier
  • , Reece Foy
  • , Rozita adib
  • , Ananya Kar
  • , Jordan Holt
  • , Aanchal Pareri
  • , Juan Valverde
  • , Rene Riviera
  • , William Weston
  • , Rona Wilson
  • , Clement Regnault
  • , Phil Whitfield
  • , Mihaly Badonyi
  • , Laura Bennett
  • , Ellen Vernon
  • , Amelia Gamble
  • , Joseph Marsh
  • , Christopher Staples
  • , Adrian Saurin
  • , Alexsis Barr
  • Tony Ly
  • University of Dundee
  • University of Edinburgh
  • Institute of Health and Wellbeing, University of Glasgow, Glasgow, Scotland
  • Grand Challenges in Ecosystem and the Environment Initiative, Imperial College London, Silwood Park Campus, Ascot, Berkshire SL5 7PY, UK [email protected].
  • Medical Research Council (MRC)

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

127 Wedi eu Llwytho i Lawr (Pure)

Crynodeb

Abnormal increases in cell size are associated with senescence and cell cycle exit. The mechanisms by which overgrowth primes cells to withdraw from the cell cycle remain unknown. We address this question using CDK4/6 inhibitors, which arrest cells in G0/G1 and are licensed to treat advanced HR+/HER2− breast cancer. We demonstrate that CDK4/6-inhibited cells overgrow during G0/G1, causing p38/p53/p21-dependent cell cycle withdrawal. Cell cycle withdrawal is triggered by biphasic p21 induction. The first p21 wave is caused by osmotic stress, leading to p38- and size-dependent accumulation of p21. CDK4/6 inhibitor washout results in some cells entering S-phase. Overgrown cells experience replication stress, resulting in a second p21 wave that promotes cell cycle withdrawal from G2 or the subsequent G1. We propose that the levels of p21 integrate signals from overgrowth-triggered stresses to determine cell fate. This model explains how hypertrophy can drive senescence and why CDK4/6 inhibitors have long-lasting effects in patients.
Iaith wreiddiolSaesneg
Tudalennau (o-i) 4062-4077
Nifer y tudalennau15
CyfnodolynMolecular Cell
Cyfrol83
Rhif cyhoeddi22
Dynodwyr Gwrthrych Digidol (DOIs)
StatwsCyhoeddwyd - 16 Tach 2023

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