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Telomeric protein TRF2 protects Holliday junctions with telomeric arms from displacement by the Werner syndrome helicase

机译:端粒蛋白TRF2保护端粒臂的霍利迪连接免受Werner综合征解旋酶的置换

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摘要

WRN protein loss causes Werner syndrome (WS), which is characterized by premature aging as well as genomic and telomeric instability. WRN prevents telomere loss, but the telomeric protein complex must regulate WRN activities to prevent aberrant telomere processing. Telomere-binding TRF2 protein inhibits telomere t-loop deletion by blocking Holliday junction (HJ) resolvase cleavage activity, but whether TRF2 also modulates HJ displacement at t-loops is unknown. In this study, we used multiplex fluorophore imaging to track the fate of individual strands of HJ substrates. We report the novel finding that TRF2 inhibits WRN helicase strand displacement of HJs with telomeric repeats in duplex arms, but unwinding of HJs with a telomeric center or lacking telomeric sequence is unaffected. These data, together with results using TRF2 fragments and TRF2 HJ binding assays, indicate that both the TRF2 B- and Myb domains are required to inhibit WRN HJ activity. We propose a novel model whereby simultaneous binding of the TRF2 B-domain to the HJ core and the Myb domain to telomeric arms promote and stabilize HJs in a stacked arm conformation that is unfavorable for unwinding. Our biochemical study provides a mechanistic basis for the cellular findings that TRF2 regulates WRN activity at telomeres.
机译:WRN蛋白丢失会导致Werner综合征(WS),其特征是过早衰老以及基因组和端粒不稳定性。 WRN可以防止端粒丢失,但是端粒蛋白复合物必须调节WRN活性,以防止端粒异常加工。端粒结合TRF2蛋白通过阻断霍利迪结(HJ)分解酶的裂解活性来抑制端粒t环的缺失,但是TRF2是否还在t环上调节HJ的位移尚不清楚。在这项研究中,我们使用了多重荧光团成像技术来追踪HJ底物的各个链的命运。我们报告了新颖的发现,TRF2抑制HJs与双链臂中端粒重复的WRN解旋酶链置换,但解开具有端粒中心或缺乏端粒序列的HJs不受影响。这些数据以及使用TRF2片段和TRF2 HJ结合测定的结果表明,TRF2 B和Myb结构域均需要抑制WRN HJ活性。我们提出了一种新颖的模型,通过该模型,TRF2 B结构域与HJ核心的同时结合以及Myb结构域与端粒的结合促进并稳定了HJs,而这些构象不利于展开。我们的生化研究为TRF2调节端粒WRN活性的细胞发现提供了机理基础。

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