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Centromere proteins CENP-C and CAL1 functionally interact in meiosis for centromere clustering, pairing, and chromosome segregation

机译:着丝粒蛋白CENp-C和CaL1在减数分裂中功能性相互作用,用于着丝粒聚类,配对和染色体分离

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摘要

Meiotic chromosome segregation involves pairing and segregation of homologous chromosomes in the first division and segregation of sister chromatids in the second division. Although it is known that the centromere and kinetochore are responsible for chromosome movement in meiosis as in mitosis, potential specialized meiotic functions are being uncovered. Centromere pairing early in meiosis I, even between nonhomologous chromosomes, and clustering of centromeres can promote proper homolog associations in meiosis I in yeast, plants, and Drosophila. It was not known, however, whether centromere proteins are required for this clustering. We exploited Drosophila mutants for the centromere proteins centromere protein-C (CENP-C) and chromosome alignment 1 (CAL1) to demonstrate that a functional centromere is needed for centromere clustering and pairing. The cenp-C and cal1 mutations result in C-terminal truncations, removing the domains through which these two proteins interact. The mutants show striking genetic interactions, failing to complement as double heterozygotes, resulting in disrupted centromere clustering and meiotic nondisjunction. The cluster of meiotic centromeres localizes to the nucleolus, and this association requires centromere function. In Drosophila, synaptonemal complex (SC) formation can initiate from the centromere, and the SC is retained at the centromere after it disassembles from the chromosome arms. Although functional CENP-C and CAL1 are dispensable for assembly of the SC, they are required for subsequent retention of the SC at the centromere. These results show that integral centromere proteins are required for nuclear position and intercentromere associations in meiosis.
机译:减数分裂染色体分离涉及在第一分区中同源染色体的配对和分离以及在第二分区中姊妹染色单体的分离。尽管众所周知,着丝粒和动粒体负责减数分裂中的染色体运动,就像有丝分裂中一样,但潜在的专门减数分裂功能正在被发现。在减数分裂I的早期,甚​​至在非同源染色体之间,着丝粒配对和着丝粒的聚集可以促进酵母,植物和果蝇在减数分裂I中的适当同源物关联。但是,尚不清楚该簇是否需要着丝粒蛋白。我们利用果蝇突变体的着丝粒蛋白着丝粒蛋白C(CENP-C)和染色体比对1(CAL1)来证明功能着丝粒是着丝粒聚类和配对所必需的。 cenp-C和cal1突变导致C端截短,从而去除了这两种蛋白相互作用的域。突变体显示出惊人的遗传相互作用,不能作为双重杂合子来互补,从而导致着丝粒簇的破坏和减数分裂的非分离。减数分裂着丝粒簇定位于核仁,这种结合需要着丝粒功能。在果蝇中,突触复合物(SC)的形成可以从着丝粒开始,并且在从染色体臂上分解后,SC保留在着丝粒上。尽管功能性CENP-C和CAL1对于SC的组装是必不可少的,但它们是随后将SC保留在着丝粒处所必需的。这些结果表明,整合型着丝粒蛋白是减数分裂中核位置和着丝粒间结合所必需的。

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