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长染色体臂的姐妹染色单体分离不完全。

Incomplete sister chromatid separation of long chromosome arms.

作者信息

Rens W, Torosantucci L, Degrassi F, Ferguson-Smith M A

机构信息

Cambridge Resource Centre for Comparative Genomics, UK.

出版信息

Chromosoma. 2006 Dec;115(6):481-90. doi: 10.1007/s00412-006-0077-1. Epub 2006 Oct 5.

Abstract

Chromosome segregation ensures the equal partitioning of chromosomes at mitosis. However, long chromosome arms may pose a problem for complete sister chromatid separation. In this paper we report on the analysis of cell division in primary cells from field vole Microtus agrestis, a species with 52 chromosomes including two giant sex chromosomes. Dual chromosome painting with probes specific for the X and the Y chromosomes showed that these long chromosomes are prone to mis-segregate, producing DNA bridges between daughter nuclei and micronuclei. Analysis of mitotic cells with incomplete chromatid separation showed that reassembly of the nuclear membrane, deposition of INner CENtromere Protein (INCENP)/Aurora B to the spindle midzone and furrow formation occur while the two groups of daughter chromosomes are still connected by sex chromosome arms. Late cytokinetic processes are not efficiently inhibited by the incomplete segregation as in a significant number of cell divisions cytoplasmic abscission proceeds while Aurora B is at the midbody. Live-cell imaging during late mitotic stages also revealed abnormal cell division with persistent sister chromatid connections. We conclude that late mitotic regulatory events do not monitor incomplete sister chromatid separation of the large X and Y chromosomes of Microtus agrestis, leading to defective segregation of these chromosomes. These findings suggest a limit in chromosome arm length for efficient chromosome transmission through mitosis.

摘要

染色体分离确保了有丝分裂时染色体的均等分配。然而,较长的染色体臂可能会给姐妹染色单体的完全分离带来问题。在本文中,我们报告了对田鼠(Microtus agrestis)原代细胞中细胞分裂的分析,该物种有52条染色体,包括两条巨大的性染色体。用针对X和Y染色体的特异性探针进行双色染色体描绘显示,这些长染色体容易发生错分离,在子核和微核之间产生DNA桥。对染色单体分离不完全的有丝分裂细胞的分析表明,当两组子染色体仍通过性染色体臂相连时,核膜会重新组装,着丝粒内蛋白(INCENP)/极光激酶B会沉积到纺锤体中区,同时会形成沟。与不完全分离一样,后期胞质分裂过程并没有被有效抑制,因为在大量细胞分裂中,当极光激酶B位于中体时,胞质分裂仍会进行。有丝分裂后期的活细胞成像也揭示了存在持续姐妹染色单体连接的异常细胞分裂。我们得出结论,有丝分裂后期调控事件并未监测到田鼠大X和Y染色体姐妹染色单体的不完全分离,从而导致这些染色体的分离缺陷。这些发现表明,通过有丝分裂进行有效染色体传递时,染色体臂长度存在限制。

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