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Strand exchange of telomeric DNA catalyzed by the Werner syndrome protein (WRN) is specifically stimulated by TRF2

机译:Werner综合征蛋白(WRN)催化的端粒DNA链交换受TRF2特异性刺激

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Werner syndrome (WS), caused by loss of function of the RecQ helicase WRN, is a hereditary disease characterized by premature aging and elevated cancer incidence. WRN has DNA binding, exonuclease, ATPase, helicase and strand annealing activities, suggesting possible roles in recombination-related processes. Evidence indicates that WRN deficiency causes telomeric abnormalities that likely underlie early onset of aging phenotypes in WS. Furthermore, TRF2, a protein essential for telomere protection, interacts with WRN and influences its basic helicase and exonuclease activities. However, these studies provided little insight into WRN's specific function at telomeres. Here, we explored the possibility that WRN and TRF2 cooperate during telomeric recombination processes. Our results indicate that TRF2, through its interactions with both WRN and telomeric DNA, stimulates WRN-mediated strand exchange specifically between telomeric substrates; TRF2's basic domain is particularly important for this stimulation. Although TRF1 binds telomeric DNA with similar affinity, it has minimal effects on WRN-mediated strand exchange of telomeric DNA. Moreover, TRF2 is displaced from telomeric DNA by WRN, independent of its ATPase and helicase activities. Together, these results suggest that TRF2 and WRN act coordinately during telomeric recombination processes, consistent with certain telomeric abnormalities associated with alteration of WRN function
机译:由RecQ解旋酶WRN功能丧失引起的Werner综合征(WS)是一种遗传性疾病,其特征是过早衰老和癌症发病率升高。 WRN具有DNA结合,核酸外切酶,ATPase,解旋酶和链退火活性,表明在重组相关过程中可能发挥作用。有证据表明,WRN缺乏会导致端粒异常,这可能是WS中衰老表型的较早发作的基础。此外,TRF2是端粒保护所必需的蛋白质,它与WRN相互作用并影响其基本解旋酶和核酸外切酶活性。但是,这些研究对WRN在端粒的特定功能了解甚少。在这里,我们探讨了端粒重组过程中WRN和TRF2合作的可能性。我们的结果表明,TRF2通过与WRN和端粒DNA的相互作用,特别是在端粒底物之间刺激WRN介导的链交换。 TRF2的基本域对于这种刺激特别重要。尽管TRF1以相似的亲和力结合端粒DNA,但对WRN介导的端粒DNA链交换影响很小。此外,TRF2通过WRN从端粒DNA置换,而与其ATPase和解旋酶活性无关。总之,这些结果表明TRF2和WRN在端粒重组过程中协同作用,与某些与WRN功能改变有关的端粒异常一致

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