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异常的复制时间在果蝇ORC2突变体中诱导染色体凝聚缺陷。

Aberrant replication timing induces defective chromosome condensation in Drosophila ORC2 mutants.

作者信息

Loupart M L, Krause S A, Heck M S

机构信息

University of Edinburgh, Wellcome Trust Centre for Cell Biology, Institute of Cell and Molecular Biology, Michael Swann Building, King's Buildings, Mayfield Road, Edinburgh EH9 3JR, UK.

出版信息

Curr Biol. 2000;10(24):1547-56. doi: 10.1016/s0960-9822(00)00844-7.

Abstract

BACKGROUND

The accurate duplication and packaging of the genome is an absolute prerequisite to the segregation of chromosomes in mitosis. To understand the process of cell-cycle chromosome dynamics further, we have performed the first detailed characterization of a mutation affecting mitotic chromosome condensation in a metazoan. Our combined genetic and cytological approaches in Drosophila complement and extend existing work employing yeast genetics and Xenopus in vitro extract systems to characterize higher-order chromosome structure and function.

RESULTS

Two alleles of the ORC2 gene were found to cause death late in larval development, with defects in cell-cycle progression (delays in S-phase entry and metaphase exit) and chromosome condensation in mitosis. During S-phase progression in wild-type cells, euchromatin replicates early and heterochromatin replicates late. Both alleles disrupted the normal pattern of chromosomal replication, with some euchromatic regions replicating even later than heterochromatin. Mitotic chromosomes were irregularly condensed, with the abnormally late replicating regions of euchromatin exhibiting the greatest problems in mitotic condensation.

CONCLUSIONS

The results not only reveal novel functions for ORC2 in chromosome architecture in metazoans, they also suggest that the correct timing of DNA replication may be essential for the assembly of chromatin that is fully competent to undergo mitotic condensation.

摘要

背景

基因组的精确复制和包装是有丝分裂中染色体分离的绝对前提。为了进一步了解细胞周期中染色体动态变化的过程,我们首次对后生动物中影响有丝分裂染色体凝聚的一个突变进行了详细表征。我们在果蝇中采用的遗传和细胞学相结合的方法,补充并扩展了现有的利用酵母遗传学和非洲爪蟾体外提取物系统来表征高阶染色体结构和功能的研究工作。

结果

发现ORC2基因的两个等位基因会导致幼虫发育后期死亡,伴有细胞周期进程缺陷(进入S期和中期退出延迟)以及有丝分裂中的染色体凝聚缺陷。在野生型细胞的S期进程中,常染色质早期复制而异染色质晚期复制。两个等位基因都破坏了正常的染色体复制模式,一些常染色质区域甚至比异染色质复制得更晚。有丝分裂染色体凝聚不规则,常染色质中异常晚期复制的区域在有丝分裂凝聚中表现出最大的问题。

结论

这些结果不仅揭示了ORC2在后生动物染色体结构中的新功能,还表明DNA复制的正确时间对于能够完全进行有丝分裂凝聚的染色质组装可能至关重要。

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