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新型果蝇着丝粒相关蛋白的鉴定。

Identification of novel Drosophila centromere-associated proteins.

作者信息

Barth Teresa K, Schade Georg O M, Schmidt Andreas, Vetter Irene, Wirth Marc, Heun Patrick, Thomae Andreas W, Imhof Axel

机构信息

Munich Center of Integrated Protein Science, Adolf-Butenandt Institute, Ludwig Maximilians University of Munich, Munich, Germany.

出版信息

Proteomics. 2014 Oct;14(19):2167-78. doi: 10.1002/pmic.201400052. Epub 2014 Jul 14.

Abstract

Centromeres are chromosomal regions crucial for correct chromosome segregation during mitosis and meiosis. They are epigenetically defined by centromeric proteins such as the centromere-specific histone H3-variant centromere protein A (CENP-A). In humans, 16 additional proteins have been described to be constitutively associated with centromeres throughout the cell cycle, known as the constitutive centromere-associated network (CCAN). In contrast, only one additional constitutive centromeric protein is known in Drosophila melanogaster (D.mel), the conserved CCAN member CENP-C. To gain further insights into D.mel centromere composition and biology, we analyzed affinity-purified chromatin prepared from D.mel cell lines expressing green fluorescent protein tagged histone three variants by MS. In addition to already-known centromeric proteins, we identified novel factors that were repeatedly enriched in affinity purification-MS experiments. We analyzed the cellular localization of selected candidates by immunocytochemistry and confirmed localization to the centromere and other genomic regions for ten factors. Furthermore, RNA interference mediated depletion of CG2051, CG14480, and hyperplastic discs, three of our strongest candidates, leads to elevated mitotic defects. Knockdowns of these candidates neither impair the localization of several known kinetochore proteins nor CENP-A(CID) loading, suggesting their involvement in alternative pathways that contribute to proper centromere function. In summary, we provide a comprehensive analysis of the proteomic composition of Drosophila centromeres. All MS data have been deposited in the ProteomeXchange with identifier PXD000758 (http://proteomecentral.proteomexchange.org/dataset/PXD000758).

摘要

着丝粒是有丝分裂和减数分裂过程中对正确染色体分离至关重要的染色体区域。它们通过着丝粒蛋白如着丝粒特异性组蛋白H3变体着丝粒蛋白A(CENP - A)在表观遗传上被定义。在人类中,已描述有另外16种蛋白质在整个细胞周期中与着丝粒组成型相关,称为组成型着丝粒相关网络(CCAN)。相比之下,在黑腹果蝇(D.mel)中仅已知一种额外的组成型着丝粒蛋白,即保守的CCAN成员CENP - C。为了进一步深入了解D.mel着丝粒的组成和生物学特性,我们通过质谱分析了从表达绿色荧光蛋白标记的组蛋白三种变体的D.mel细胞系中亲和纯化的染色质。除了已知的着丝粒蛋白外,我们还鉴定出在亲和纯化 - 质谱实验中反复富集的新因子。我们通过免疫细胞化学分析了选定候选物的细胞定位,并确认了10种因子定位于着丝粒和其他基因组区域。此外,RNA干扰介导的我们最强的三个候选物CG2051、CG14480和增生盘的缺失导致有丝分裂缺陷增加。这些候选物的敲低既不损害几种已知动粒蛋白的定位,也不影响CENP - A(CID)的加载,表明它们参与了有助于着丝粒正常功能的替代途径。总之,我们提供了对果蝇着丝粒蛋白质组组成的全面分析。所有质谱数据已存入ProteomeXchange,标识符为PXD000758(http://proteomecentral.proteomexchange.org/dataset/PXD000758)。

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