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Physical Links Between the Nuclear Envelope Protein Mps3, Three Alternate Replication Factor C Complexes, and a Variant Histone in Saccharomyces cerevisiae

机译:酿酒酵母中核膜蛋白Mps3,三个替代复制因子C复合物和变异组蛋白之间的物理联系。

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Viability of cell progeny upon cell division require that genomes are replicated, repaired, and maintained with high fidelity. Central to both DNA replication and repair are Replication Factor C (RFC) complexes which catalyze the unloading/loading of sliding clamps such as PCNA or 9-1-1 complexes on DNA. Budding yeast contain four alternate RFC complexes which play partially redundant roles. Rfc1, Ctf18, Rad24, and Elg1 are all large subunits that bind, in a mutually exclusive fashion to RFC 2-5 small subunits. Ctf18, Rad24, and Elg1 are of particular interest because, in addition to their roles in maintaining genome integrity, all three play critical roles in sister chromatid tethering reactions that appear coupled to their roles in DNA replication/repair. Intriguingly, the nuclear envelope protein Mps3 similarly exhibits roles in repair and cohesion, leading us to hypothesize that Mps3 and RFCs function through a singular mechanism. Here we report that the nuclear envelope protein Mps3 physically associates with all three of these large RFC complex subunits (Ctf18, Elg1, and Rad24). In addition we report a physical interaction between Mps3 and the histone variant Htz1, a factor previously shown to promote DNA repair. In combination, these findings reveal a direct link between the nuclear envelope and chromatin and provide support for a model that telomeres and chromatin interact with the nuclear envelope during both DNA repair and sister chromatid pairing reactions.
机译:细胞分裂后细胞后代的生存能力要求基因组以高保真度进行复制,修复和维持。 DNA复制和修复的核心是复制因子C(RFC)复合物,它催化滑动夹具(如PCNA)或DNA上的9-1-1复合物的卸载/装载。芽芽酵母包含四个替代的RFC复合体,它们部分发挥冗余作用。 Rfc1,Ctf18,Rad24和Elg1都是以RFC 2-5小亚基相互排斥的方式绑定的大亚基。 Ctf18,Rad24和Elg1特别令人感兴趣,因为除了它们在维持基因组完整性方面的作用外,所有这三个在姐妹染色单体束缚反应中都起着至关重要的作用,这些反应似乎与它们在DNA复制/修复中的作用相关。有趣的是,核包膜蛋白Mps3同样在修复和内聚中发挥作用,使我们推测Mps3和RFC通过单一机制起作用。在这里,我们报告核包膜蛋白Mps3与所有这些大型RFC复杂亚基(Ctf18,Elg1和Rad24)在物理上相关联。此外,我们报道了Mps3与组蛋白变体Htz1之间的物理相互作用,Htz1是先前显示出促进DNA修复的因子。总之,这些发现揭示了核包膜和染色质之间的直接联系,并为端粒和染色质在DNA修复和姐妹染色单体配对反应期间与核包膜相互作用的模型提供了支持。

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