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Saccharomyces cerevisiae CTF18 and CTF4 Are Required for Sister Chromatid Cohesion

机译:酿酒酵母CTF18和CTF4对于姐妹染色单体的凝聚力是必需的

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摘要

CTF4 and CTF18 are required for high-fidelity chromosome segregation. Both exhibit genetic and physical ties to replication fork constituents. We find that absence of either CTF4 or CTF18 causes sister chromatid cohesion failure and leads to a preanaphase accumulation of cells that depends on the spindle assembly checkpoint. The physical and genetic interactions between CTF4, CTF18, and core components of replication fork complexes observed in this study and others suggest that both gene products act in association with the replication fork to facilitate sister chromatid cohesion. We find that Ctf18p, an RFC1-like protein, directly interacts with Rfc2p, Rfc3p, Rfc4p, and Rfc5p. However, Ctf18p is not a component of biochemically purified proliferating cell nuclear antigen loading RF-C, suggesting the presence of a discrete complex containing Ctf18p, Rfc2p, Rfc3p, Rfc4p, and Rfc5p. Recent identification and characterization of the budding yeast polymerase κ, encoded by TRF4, strongly supports a hypothesis that the DNA replication machinery is required for proper sister chromatid cohesion. Analogous to the polymerase switching role of the bacterial and human RF-C complexes, we propose that budding yeast RF-CCTF18 may be involved in a polymerase switch event that facilities sister chromatid cohesion. The requirement for CTF4 and CTF18 in robust cohesion identifies novel roles for replication accessory proteins in this process.
机译:高保真染色体分离需要CTF4和CTF18。两者都表现出与复制叉成分的遗传和物理联系。我们发现,缺少CTF4或CTF18会导致姐妹染色单体内聚失败,并导致依赖于纺锤体装配检查点的前期细胞积累。在这项研究和其他研究中观察到的CTF4,CTF18和复制叉复合物的核心组件之间的物理和遗传相互作用表明,这两种基因产物均与复制叉相关联,以促进姐妹染色单体的内聚。我们发现Ctf18p(一种类似于RFC1的蛋白质)直接与Rfc2p,Rfc3p,Rfc4p和Rfc5p相互作用。但是,Ctf18p不是生物化学纯化的增殖细胞核抗原负载RF-C的成分,表明存在包含Ctf18p,Rfc2p,Rfc3p,Rfc4p和Rfc5p的离散复合物。最近对TRF4编码的发芽酵母聚合酶κ的鉴定和表征,强烈支持了这样一种假说:DNA复制机制是正确的姐妹染色单体凝聚所必需的。类似于细菌和人类RF-C复合物的聚合酶转换作用,我们认为发芽酵母RF-C CTF18 可能参与了促进姐妹染色单体凝聚的聚合酶转换事件。对CTF4和CTF18强大的内聚力的要求确定了在此过程中复制辅助蛋白的新作用。

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