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全基因组分析揭示了一种控制着丝粒复制的细胞周期依赖性机制。

Genome-wide analysis reveals a cell cycle-dependent mechanism controlling centromere propagation.

作者信息

Erhardt Sylvia, Mellone Barbara G, Betts Craig M, Zhang Weiguo, Karpen Gary H, Straight Aaron F

机构信息

Department of Genome Dynamics, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.

出版信息

J Cell Biol. 2008 Dec 1;183(5):805-18. doi: 10.1083/jcb.200806038.

Abstract

Centromeres are the structural and functional foundation for kinetochore formation, spindle attachment, and chromosome segregation. In this study, we isolated factors required for centromere propagation using genome-wide RNA interference screening for defects in centromere protein A (CENP-A; centromere identifier [CID]) localization in Drosophila melanogaster. We identified the proteins CAL1 and CENP-C as essential factors for CID assembly at the centromere. CID, CAL1, and CENP-C coimmunoprecipitate and are mutually dependent for centromere localization and function. We also identified the mitotic cyclin A (CYCA) and the anaphase-promoting complex (APC) inhibitor RCA1/Emi1 as regulators of centromere propagation. We show that CYCA is centromere localized and that CYCA and RCA1/Emi1 couple centromere assembly to the cell cycle through regulation of the fizzy-related/CDH1 subunit of the APC. Our findings identify essential components of the epigenetic machinery that ensures proper specification and propagation of the centromere and suggest a mechanism for coordinating centromere inheritance with cell division.

摘要

着丝粒是动粒形成、纺锤体附着和染色体分离的结构和功能基础。在本研究中,我们通过全基因组RNA干扰筛选果蝇中着丝粒蛋白A(CENP-A;着丝粒标识符[CID])定位缺陷,分离出着丝粒复制所需的因子。我们鉴定出蛋白CAL1和CENP-C是着丝粒处CID组装的必需因子。CID、CAL1和CENP-C共同免疫沉淀,并且在着丝粒定位和功能上相互依赖。我们还鉴定出有丝分裂周期蛋白A(CYCA)和后期促进复合物(APC)抑制剂RCA1/Emi1是着丝粒复制的调节因子。我们发现CYCA定位于着丝粒,并且CYCA和RCA1/Emi1通过调节APC的fizzy相关/CDH1亚基,将着丝粒组装与细胞周期联系起来。我们的研究结果确定了确保着丝粒正确特化和复制的表观遗传机制的重要组成部分,并提出了一种将着丝粒遗传与细胞分裂相协调的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eced/2592830/3b7182fdd14f/jcb1830805f01.jpg

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