Depletion of WRN protein causes RACK1 to activate several protein kinase C isoforms

被引:0
作者
L Massip
C Garand
A Labbé
È Perreault
R V N Turaga
V A Bohr
M Lebel
机构
[1] Centre de Recherche en Cancérologie de l’Université Laval,Department of Molecular Biology
[2] Medical Biochemistry and Pathology,undefined
[3] Hôpital Hôtel-Dieu de Québec,undefined
[4] Laboratory of Molecular Gerontology,undefined
[5] National Institute on Aging,undefined
[6] National Institutes of Health,undefined
[7] 5600 Nathan Shock Drive,undefined
来源
Oncogene | 2010年 / 29卷
关键词
Werner syndrome; mass spectrometry; RACK1; PKC activation;
D O I
暂无
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学科分类号
摘要
Werner's syndrome (WS) is a rare autosomal disease characterized by the premature onset of several age-associated pathologies. The protein defective in patients with WS (WRN) is a helicase/exonuclease involved in DNA repair, replication, transcription and telomere maintenance. In this study, we show that a knock down of the WRN protein in normal human fibroblasts induces phosphorylation and activation of several protein kinase C (PKC) enzymes. Using a tandem affinity purification strategy, we found that WRN physically and functionally interacts with receptor for activated C-kinase 1 (RACK1), a highly conserved anchoring protein involved in various biological processes, such as cell growth and proliferation. RACK1 binds strongly to the RQC domain of WRN and weakly to its acidic repeat region. Purified RACK1 has no impact on the helicase activity of WRN, but selectively inhibits WRN exonuclease activity in vitro. Interestingly, knocking down RACK1 increased the cellular frequency of DNA breaks. Depletion of the WRN protein in return caused a fraction of nuclear RACK1 to translocate out of the nucleus to bind and activate PKCδ and PKCβII in the membrane fraction of cells. In contrast, different DNA-damaging treatments known to activate PKCs did not induce RACK1/PKCs association in cells. Overall, our results indicate that a depletion of the WRN protein in normal fibroblasts causes the activation of several PKCs through translocation and association of RACK1 with such kinases.
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页码:1486 / 1497
页数:11
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  • [1] Battaini F(1997)The role of anchoring protein RACK1 in PKC activation in the ageing rat brain Trends Neurosci 20 410-415
  • [2] Pascale A(1998)The free radical theory of aging matures Physiol Rev 78 547-581
  • [3] Paoletti R(2000)RACK1 is up-regulated in angiogenesis and human carcinomas FASEB J 14 2549-5258
  • [4] Govoni S(2002)The anchoring protein RACK1 links protein kinase Cepsilon to integrin beta chains. Requirements for adhesion and motility J Biol Chem 277 22073-22084
  • [5] Beckman KB(2001)Werner syndrome protein interacts with human flap endonuclease 1 and stimulates its cleavage activity EMBO J 20 5791-5801
  • [6] Ames BN(2007)Werner syndrome protein: functions in the response to DNA damage and replication stress in S-phase Exp Gerontol 42 871-878
  • [7] Berns H(2008)WRN is required for ATM activation and the S-phase checkpoint in response to interstrand cross-link-induced DNA double-strand breaks Mol Biol Cell 19 3923-3933
  • [8] Humar R(2000)Ku complex interacts with and stimulates the Werner protein Genes Dev 14 907-912
  • [9] Hengerer B(2005)Age-related decline in RACK-1 expression in human leukocytes is correlated to plasma levels of dehydroepiandrosterone J Leuk Biol 77 247-256
  • [10] Kiefer FN(2007)The human Werner syndrome protein stimulates repair of oxidative DNA base damage by the DNA glycosylase NEIL1 J Biol Chem 282 26591-26602