کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
1919248 | 1535613 | 2014 | 8 صفحه PDF | دانلود رایگان |

• PPM1B protein levels are progressively decreased in aged human lung fibroblasts.
• PPM1B-depleted young cells become premature senescent.
• PPM1B depletion-dependent senescence involves p38 MAPK activation and p53 stabilisation.
p53 and NF-κB are key transcription factors in regulating the gene expression program of cellular and organismal senescence. PPM1B is a member of the protein phosphatase 2C family and plays a role in negatively regulating p53 and NF-κB thereby possibly attenuating the gene expression program of cellular senescence. Here, possible involvement of PPM1B in replicative senescence has been investigated using the in vitro aging model of IMR-90 cells. PPM1B protein levels are progressively decreased in a replicative age-dependent manner. Importantly, PPM1B depletion induces a robust senescence phenotype as evidenced by significant growth arrest and senescence marker expression. Given that PPM1B depletion-induced senescence is partially rescued by inactivating p38 MAPK, our results identify PPM1B as a critical regulator of both p38 MAPK-dependent and independent senescence pathways during normal cellular aging process.
Journal: Mechanisms of Ageing and Development - Volume 138, June 2014, Pages 45–52