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Rif1 promotes association of G-quadruplex (G4) by its specific G4 binding and oligomerization activities

机译:Rif1通过其特定的G4结合和寡聚活性促进G-四链体(G4)的缔合

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摘要

Rif1 is a conserved protein regulating replication timing and binds preferentially to the vicinity of late-firing/dormant origins in fission yeast. The Rif1 binding sites on the fission yeast genome have an intrinsic potential to generate G-quadruplex (G4) structures to which purified Rif1 preferentially binds. We previously proposed that Rif1 generates chromatin architecture that may determine replication timing by facilitating the chromatin loop formation. Here, we conducted detailed biochemical analyses on Rif1 and its G4 binding. Rif1 prefers sequences containing long stretches of guanines and binds preferentially to the multimeric G4 of parallel or hybrid/mix topology. Rif1 forms oligomers and binds simultaneously to multiple G4. We present a model on how Rif1 may facilitate the formation of chromatin architecture through its G4 binding and oligomerization properties.
机译:Rif1是一种保守的蛋白质,可调节复制时机,并优先与裂变酵母中晚生/休眠起源的附近结合。裂变酵母基因组上的Rif1结合位点具有产生纯化的Rif1优先结合的G-四链体(G4)结构的内在潜力。我们以前提出Rif1生成染色质结构,可以通过促进染色质环的形成来确定复制时机。在这里,我们对Rif1及其G4结合进行了详细的生化分析。 Rif1更喜欢含有长段鸟嘌呤的序列,并优先与平行或杂交/混合拓扑的多聚体G4结合。 Rif1形成寡聚物,并同时与多个G4结合。我们提出了一个模型,关于Rif1如何通过其G4结合和低聚特性促进染色质体系的形成。

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