Tomonaga T, Nagao K, Kawasaki Y, Furuya K, Murakami A, Morishita J, Yuasa T, Sutani T, Kearsey S E, Uhlmann F, Nasmyth K, Yanagida M
CREST Research Project, Department of Gene Mechanisms, Graduate School of Biostudies, Kyoto University, Kitashirakawa-Oiwakecho, Sakyo-ku, Kyoto 606-8502, Japan.
Genes Dev. 2000 Nov 1;14(21):2757-70. doi: 10.1101/gad.832000.
Cohesin complex acts in the formation and maintenance of sister chromatid cohesion during and after S phase. Budding yeast Scc1p/Mcd1p, an essential subunit, is cleaved and dissociates from chromosomes in anaphase, leading to sister chromatid separation. Most cohesin in higher eukaryotes, in contrast, is dissociated from chromosomes well before anaphase. The universal role of cohesin during anaphase thus remains to be determined. We report here initial characterization of four putative cohesin subunits, Psm1, Psm3, Rad21, and Psc3, in fission yeast. They are essential for sister chromatid cohesion. Immunoprecipitation demonstrates stable complex formation of Rad21 with Psm1 and Psm3 but not with Psc3. Chromatin immunoprecipitation shows that cohesin subunits are enriched in broad centromere regions and that the level of centromere-associated Rad21 did not change from metaphase to anaphase, very different from budding yeast. In contrast, Rad21 containing similar cleavage sites to those of Scc1p/Mcd1p is cleaved specifically in anaphase. This cleavage is essential, although the amount of cleaved product is very small (<5%). Mis4, another sister chromatid cohesion protein, plays an essential role for loading Rad21 on chromatin. A simple model is presented to explain the specific behavior of fission yeast cohesin and why only a tiny fraction of Rad21 is sufficient to be cleaved for normal anaphase.
黏连蛋白复合体在S期及之后的过程中参与姐妹染色单体黏连的形成与维持。芽殖酵母的Scc1p/Mcd1p是一个必需亚基,在后期被切割并从染色体上解离,导致姐妹染色单体分离。相比之下,高等真核生物中的大多数黏连蛋白在后期之前就已从染色体上解离。因此,黏连蛋白在后期的普遍作用仍有待确定。我们在此报告了裂殖酵母中四个假定的黏连蛋白亚基Psm1、Psm3、Rad21和Psc3的初步特征。它们对于姐妹染色单体黏连至关重要。免疫沉淀表明Rad21与Psm1和Psm3形成稳定的复合体,但与Psc3不形成。染色质免疫沉淀显示黏连蛋白亚基在广泛的着丝粒区域富集,并且着丝粒相关的Rad21水平从中期到后期没有变化,这与芽殖酵母非常不同。相比之下,含有与Scc1p/Mcd1p类似切割位点的Rad21在后期被特异性切割。这种切割是必不可少的,尽管切割产物的量非常少(<5%)。Mis4是另一种姐妹染色单体黏连蛋白,在将Rad21加载到染色质上起重要作用。本文提出了一个简单模型来解释裂殖酵母黏连蛋白的特定行为,以及为什么只有一小部分Rad21被切割就足以实现正常后期。