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Rif1 and Rif2 shape telomere function and architecture through multivalent Rap1 interactions

机译:Rif1和Rif2通过多价Rap1相互作用塑造端粒功能和结构

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摘要

Yeast telomeres comprise irregular TG_(1-3) DNA repeats bound by the general transcription factor Rap1. Rif1 and Rif2, along with Rap1, form the telosome, a protective cap that inhibits telomerase, counteracts SIR-mediated transcriptional silencing, and prevents inadvertent recognition of telomeres as DNA double-strand breaks. We provide a molecular, biochemical, and functional dissection of the protein backbone at the core of the yeast telosome. The X-ray structures of Rif1 and Rif2 bound to the Rap1 C-terminal domain and that of the Rif1 C terminus are presented. Both Rif1 and Rif2 have separable and independent Rap1-binding epitopes, allowing Rap1 binding over large distances (42-110 ?). We identify tetramerization (Rif1) and polymerization (Rif2) modules that, in conjunction with the long-range binding, give rise to a higher-order architecture that interlinks Rap1 units. This molecular Velcro relies on Rif1 and Rif2 to recruit and stabilize Rap1 on telomeric arrays and is required for telomere homeostasis in vivo.
机译:酵母端粒包含由一般转录因子Rap1结合的不规则TG_(1-3)DNA重复序列。 Rif1和Rif2与Rap1一起形成端粒,这是一种保护性帽,可抑制端粒酶,抵消SIR介导的转录沉默并防止由于DNA双链断裂而引起的端粒的无意识别。我们提供了酵母端粒核心蛋白骨架的分子,生化和功能分析。呈现了绑定到Rap1 C末端域的Rif1和Rif2的X射线结构以及Rif1 C末端的X射线结构。 Rif1和Rif2都具有可分离且独立的Rap1结合表位,从而允许Rap1结合很长的距离(42-110?)。我们确定了四聚化(Rif1)和聚合(Rif2)模块,它们与远程绑定结合在一起,产生了一个高阶体系结构,该体系结构链接了Rap1单元。该分子维可牢尼龙搭扣依靠Rif1和Rif2在端粒阵列上募集并稳定Rap1,并且是体内端粒稳态的必需条件。

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