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Mub1/Ubr2 泛素连接酶复合物调节保守的 Dsn1 着丝粒蛋白。

The Mub1/Ubr2 ubiquitin ligase complex regulates the conserved Dsn1 kinetochore protein.

机构信息

Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, Washington, USA.

出版信息

PLoS Genet. 2013;9(2):e1003216. doi: 10.1371/journal.pgen.1003216. Epub 2013 Feb 7.

Abstract

The kinetochore is the macromolecular complex that assembles onto centromeric DNA and orchestrates the segregation of duplicated chromosomes. More than 60 components make up the budding yeast kinetochore, including inner kinetochore proteins that bind to centromeric chromatin and outer proteins that directly interact with microtubules. However, little is known about how these components assemble into a functional kinetochore and whether there are quality control mechanisms that monitor kinetochore integrity. We previously developed a method to isolate kinetochore particles via purification of the conserved Dsn1 kinetochore protein. We find that the Mub1/Ubr2 ubiquitin ligase complex associates with kinetochore particles through the CENP-C(Mif2) protein. Although Mub1/Ubr2 are not stable kinetochore components in vivo, they regulate the levels of the conserved outer kinetochore protein Dsn1 via ubiquitylation. Strikingly, a deletion of Mub1/Ubr2 restores the levels and viability of a mutant Dsn1 protein, reminiscent of quality control systems that target aberrant proteins for degradation. Consistent with this, Mub1/Ubr2 help to maintain viability when kinetochores are defective. Together, our data identify a previously unknown regulatory mechanism for the conserved Dsn1 kinetochore protein. We propose that Mub1/Ubr2 are part of a quality control system that monitors kinetochore integrity, thus ensuring genomic stability.

摘要

着丝粒是组装在着丝粒 DNA 上并协调复制染色体分离的大分子复合物。超过 60 个组件组成了芽殖酵母的着丝粒,包括与着丝粒染色质结合的内着丝粒蛋白和直接与微管相互作用的外蛋白。然而,对于这些组件如何组装成功能性着丝粒,以及是否存在监测着丝粒完整性的质量控制机制,我们知之甚少。我们之前开发了一种通过纯化保守的 Dsn1 着丝粒蛋白来分离着丝粒颗粒的方法。我们发现 Mub1/Ubr2 泛素连接酶复合物通过 CENP-C(Mif2)蛋白与着丝粒颗粒结合。尽管 Mub1/Ubr2 在体内不是稳定的着丝粒成分,但它们通过泛素化调节保守的外着丝粒蛋白 Dsn1 的水平。引人注目的是,Mub1/Ubr2 的缺失恢复了突变 Dsn1 蛋白的水平和活力,这让人联想到针对异常蛋白进行降解的质量控制系统。与此一致的是,当着丝粒有缺陷时,Mub1/Ubr2 有助于维持细胞活力。总之,我们的数据确定了一个以前未知的保守的 Dsn1 着丝粒蛋白的调节机制。我们提出 Mub1/Ubr2 是监测着丝粒完整性的质量控制系统的一部分,从而确保基因组的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9af1/3567142/863a4d7be286/pgen.1003216.g001.jpg

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