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利用DNA-蛋白质交联探究简单动粒的结构。

Probing the architecture of a simple kinetochore using DNA-protein crosslinking.

作者信息

Espelin C W, Kaplan K B, Sorger P K

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

J Cell Biol. 1997 Dec 15;139(6):1383-96. doi: 10.1083/jcb.139.6.1383.

Abstract

In budding yeast, accurate chromosome segregation requires that one and only one kinetochore assemble per chromosome. In this paper, we report the use of DNA-protein crosslinking and nondenaturing gel analysis to study the structure of CBF3, a four-protein complex that binds to the essential CDEIII region of Saccharomyces cerevisiae centromeres. We find that three subunits of CBF3 are in direct contact with CDEIII over a region of DNA that spans 80 bp. A highly asymmetric core complex containing p58(CTF13) p64(CEP3) and p110(NDC10) in direct contact with DNA forms at the genetically defined center of CDEIII. This core complex spans approximately 56 bp of CEN3. An extended complex comprising the core complex and additional DNA-bound p110(NDC10) also forms. It spans approximately 80 bp of DNA. CBF3 makes sequence-specific and -nonspecific contacts with DNA. Both contribute significantly to the energy of CBF3-DNA interaction. Moreover, important sequence-specific contacts are made with bases that are not conserved among yeast centromeres. These findings provide a foundation for understanding the organization of the CBF3-centromere complex, a structure that appears to initiate the formation of microtubule attachment sites at yeast kinetochores. These results also have implications for understanding centromere-binding proteins in higher cells.

摘要

在出芽酵母中,准确的染色体分离要求每条染色体上有且仅有一个动粒组装。在本文中,我们报道了利用DNA-蛋白质交联和非变性凝胶分析来研究CBF3的结构,CBF3是一种与酿酒酵母着丝粒的必需CDEIII区域结合的四蛋白复合体。我们发现CBF3的三个亚基在跨越80个碱基对的DNA区域上与CDEIII直接接触。在CDEIII的基因定义中心形成了一个高度不对称的核心复合体,其中p58(CTF13)、p64(CEP3)和p110(NDC10)与DNA直接接触。这个核心复合体跨越了CEN3的大约56个碱基对。还形成了一个扩展复合体,它由核心复合体和额外的与DNA结合的p110(NDC10)组成。它跨越了大约80个碱基对的DNA。CBF3与DNA形成序列特异性和非特异性接触。两者都对CBF3-DNA相互作用的能量有显著贡献。此外,与酵母着丝粒中不保守的碱基形成了重要的序列特异性接触。这些发现为理解CBF3-着丝粒复合体的组织提供了基础,该结构似乎在酵母动粒处启动微管附着位点的形成。这些结果对于理解高等细胞中的着丝粒结合蛋白也有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dca1/2132615/dd982c10adfb/JCB.32932f1.jpg

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