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Rap1 Binds Single-stranded DNA at Telomeric Double- and Single-stranded Junctions and Competes with Cdc13 Protein

机译:Rap1结合端粒双链和单链交界处的单链DNA并与Cdc13蛋白竞争。

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摘要

The ends of eukaryotic chromosomes are protected by specialized telomere chromatin structures. Rap1 and Cdc13 are essential for the formation of functional telomere chromatin in budding yeast by binding to the double-stranded part and the single-stranded 3′ overhang, respectively. We analyzed the binding properties of Saccharomyces castellii Rap1 and Cdc13 to partially single-stranded oligonucleotides, mimicking the junction of the double- and single-stranded DNA (ds-ss junction) at telomeres. We determined the optimal and the minimal DNA setup for a simultaneous binding of Rap1 and Cdc13 at the ds-ss junction. Remarkably, Rap1 is able to bind to a partially single-stranded binding site spanning the ds-ss junction. The binding over the ds-ss junction is anchored in a single double-stranded hemi-site and is stabilized by a sequence-independent interaction of Rap1 with the single-stranded 3′ overhang. Thus, Rap1 is able to switch between a sequence-specific and a nonspecific binding mode of one hemi-site. At a ds-ss junction configuration where the two binding sites partially overlap, Rap1 and Cdc13 are competing for the binding. These results shed light on the end protection mechanisms and suggest that Rap1 and Cdc13 act together to ensure the protection of both the 3′ and the 5′ DNA ends at telomeres.
机译:真核染色体的末端受到专门的端粒染色质结构的保护。 Rap1和Cdc13通过分别与双链部分和单链3'突出端结合,对于在发芽酵母中形成功能性端粒染色质至关重要。我们分析了酿酒酵母Rap1和Cdc13与部分单链寡核苷酸的结合特性,模仿了端粒处的双链和单链DNA的连接(ds-ss连接)。我们确定了在ds-ss交界处同时结合Rap1和Cdc13的最佳和最小DNA设置。值得注意的是,Rap1能够结合跨ds-ss连接的部分单链结合位点。 ds-ss交界处的结合锚定在单个双链半位点中,并通过Rap1与单链3'突出端的序列独立相互作用而稳定。因此,Rap1能够在一个半位点的序列特异性和非特异性结合模式之间切换。在两个结合位点部分重叠的ds-ss交界处,Rap1和Cdc13竞争结合。这些结果阐明了末端保护机制,并暗示Rap1和Cdc13共同起作用,以确保端粒处的3'和5'DNA末端均得到保护。

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