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在瞬时前期动粒分裂过程中着丝粒黏连蛋白的移位与重新积累

Displacement and re-accumulation of centromeric cohesin during transient pre-anaphase centromere splitting.

作者信息

Ocampo-Hafalla Maria T, Katou Yuki, Shirahige Katsuhiko, Uhlmann Frank

机构信息

Chromosome Segregation Laboratory, Cancer Research UK London Research Institute, 44 Lincoln's Inn Fields, London WC2A 3PX, UK.

出版信息

Chromosoma. 2007 Dec;116(6):531-44. doi: 10.1007/s00412-007-0118-4. Epub 2007 Sep 1.

Abstract

The ring-shaped cohesin complex links sister chromatids until their timely segregation during mitosis. Cohesin is enriched at centromeres where it provides the cohesive counterforce to bipolar tension produced by the mitotic spindle. As a consequence of spindle tension, centromeric sequences transiently split in pre-anaphase cells, in some organisms up to several micrometers. This 'centromere breathing' presents a paradox, how sister sequences separate where cohesin is most enriched. We now show that in the budding yeast Saccharomyces cerevisiae, cohesin binding diminishes over centromeric sequences that split during breathing. We see no evidence for cohesin translocation to surrounding sequences, suggesting that cohesin is removed from centromeres during breathing. Two pools of cohesin can be distinguished. Cohesin loaded before DNA replication, which has established sister chromatid cohesion, disappears during breathing. In contrast, cohesin loaded after DNA replication is partly retained. As sister centromeres re-associate after transient separation, cohesin is reloaded in a manner independent of the canonical cohesin loader Scc2/Scc4. Efficient centromere re-association requires the cohesion establishment factor Eco1, suggesting that re-establishment of sister chromatid cohesion contributes to the dynamic behaviour of centromeres in mitosis. These findings provide new insights into cohesin behaviour at centromeres.

摘要

环形黏连蛋白复合体连接着姐妹染色单体,直至它们在有丝分裂过程中适时分离。黏连蛋白在着丝粒处富集,在那里它为有丝分裂纺锤体产生的双极张力提供黏连反作用力。由于纺锤体张力,着丝粒序列在后期前细胞中会短暂分离,在一些生物体中分离距离可达数微米。这种“着丝粒呼吸”现象存在一个悖论,即姐妹序列如何在黏连蛋白最富集的地方分开。我们现在表明,在芽殖酵母酿酒酵母中,黏连蛋白在呼吸过程中发生分离的着丝粒序列上的结合减少。我们没有发现黏连蛋白转移到周围序列的证据,这表明在呼吸过程中黏连蛋白从着丝粒上被移除。可以区分出两群黏连蛋白。在DNA复制前加载的黏连蛋白,它已建立起姐妹染色单体黏连,在呼吸过程中消失。相比之下,在DNA复制后加载的黏连蛋白部分保留。随着姐妹着丝粒在短暂分离后重新结合,黏连蛋白以一种独立于经典黏连蛋白加载因子Scc2/Scc4的方式重新加载。有效的着丝粒重新结合需要黏连建立因子Eco1,这表明姐妹染色单体黏连的重新建立有助于着丝粒在有丝分裂中的动态行为。这些发现为黏连蛋白在着丝粒处的行为提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e10/2075529/8d3440cdde54/412_2007_118_Fig1_HTML.jpg

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