MDM2-mediated degradation of WRN promotes cellular senescence in a p53-independent manner

被引:0
作者
Boya Liu
Jingjie Yi
Xin Yang
Lu Liu
Xinlin Lou
Zeyuan Zhang
Hao Qi
Zhe Wang
Junhua Zou
Wei-Guo Zhu
Wei Gu
Jianyuan Luo
机构
[1] Peking University Health Science Center,Department of Medical Genetics
[2] Columbia University,Institute for Cancer Genetics
[3] Shenzhen University School of Medicine,Department of Biochemistry and Molecular Biology
来源
Oncogene | 2019年 / 38卷
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摘要
MDM2 (Murine double minute 2) acts as a key repressor for p53-mediated tumor-suppressor functions, which includes cellular senescence. We found that MDM2 can promote cellular senescence by modulating WRN stability. Werner syndrome (WS), caused by mutations of the WRN gene, is an autosomal recessive disease, which is characterized by premature aging. Loss of WRN function induces cellular senescence in human cancer cells. Here, we found that MDM2 acts as an E3 ligase for WRN protein. MDM2 interacts with WRN both in vivo and in vitro. MDM2 induces ubiquitination of WRN and dramatically downregulates the levels of WRN protein in human cells. During DNA damage response, WRN is translocated to the nucleoplasm to facilitate its DNA repair functions; however, it is degraded by the MDM2-mediated ubiquitination pathway. Moreover, the senescent phenotype induced by DNA damage reagents, such as Etoposide, is at least in part mediated by MDM2-dependent WRN degradation as it can be significantly attenuated by ectopic expression of WRN. These results show that MDM2 is critically involved in regulating WRN function via ubiquitin-dependent degradation and reveal an unexpected role of MDM2 in promoting cellular senescence through a p53-independent manner.
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页码:2501 / 2515
页数:14
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  • [1] Muftuoglu M(2008)The clinical characteristics of Werner syndrome: molecular and biochemical diagnosis Hum Genet 124 369-77
  • [2] Oshima J(2010)The RecQ DNA helicases in DNA repair Annu Rev Genet 44 393-417
  • [3] von Kobbe C(2000)Werner syndrome protein: biochemical properties and functional interactions Exp Gerontol 35 695-702
  • [4] Cheng WH(1998)The premature ageing syndrome protein, WRN, is a 3’-- > 5’ exonuclease Nat Genet 20 114-6
  • [5] Leistritz DF(2014)Human RecQ helicases in DNA repair, recombination, and replication Annu Rev Biochem 83 519-52
  • [6] Bohr VA(2009)Telomeric D-loops containing 8-oxo-2’-deoxyguanosine are preferred substrates for Werner and Bloom syndrome helicases and are bound by POT1 J Biol Chem 284 31074-84
  • [7] Bernstein KA(1992)Impaired S-phase transit of Werner syndrome cells expressed in lymphoblastoid cell lines Exp Cell Res 202 267-73
  • [8] Gangloff S(2004)Defective telomere lagging strand synthesis in cells lacking WRN helicase activity Science 306 1951-3
  • [9] Rothstein R(2008)The RecQ helicase WRN is required for normal replication fork progression after DNA damage or replication fork arrest Cell Cycle 7 796-807
  • [10] Bohr VA(1998)A deletion within the murine Werner syndrome helicase induces sensitivity to inhibitors of topoisomerase and loss of cellular proliferative capacity Proc Natl Acad Sci USA 95 13097-102