Losada A, Yokochi T, Kobayashi R, Hirano T
Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA.
J Cell Biol. 2000 Aug 7;150(3):405-16. doi: 10.1083/jcb.150.3.405.
A multisubunit protein complex, termed cohesin, plays an essential role in sister chromatid cohesion in yeast and in Xenopus laevis cell-free extracts. We report here that two distinct cohesin complexes exist in Xenopus egg extracts. A 14S complex (x-cohesin(SA1)) contains XSMC1, XSMC3, XRAD21, and a newly identified subunit, XSA1. In a second 12.5S complex (x-cohesin(SA2)), XSMC1, XSMC3, and XRAD21 associate with a different subunit, XSA2. Both XSA1 and XSA2 belong to the SA family of mammalian proteins and exhibit similarity to Scc3p, a recently identified component of yeast cohesin. In Xenopus egg extracts, x-cohesin(SA1) is predominant, whereas x-cohesin(SA2) constitutes only a very minor population. Human cells have a similar pair of cohesin complexes, but the SA2-type is the dominant form in somatic tissue culture cells. Immunolocalization experiments suggest that chromatin association of cohesin(SA1) and cohesin(SA2) may be differentially regulated. Dissociation of x-cohesin(SA1) from chromatin correlates with phosphorylation of XSA1 in the cell-free extracts. Purified cdc2-cyclin B can phosphorylate XSA1 in vitro and reduce the ability of x-cohesin(SA1) to bind to DNA or chromatin. These results shed light on the mechanism by which sister chromatid cohesion is partially dissolved in early mitosis, far before the onset of anaphase, in vertebrate cells.
一种称为黏连蛋白的多亚基蛋白质复合物在酵母和非洲爪蟾无细胞提取物的姐妹染色单体黏连中起着至关重要的作用。我们在此报告,在非洲爪蟾卵提取物中存在两种不同的黏连蛋白复合物。一种14S复合物(x - 黏连蛋白(SA1))包含XSMC1、XSMC3、XRAD21和一个新鉴定的亚基XSA1。在第二种12.5S复合物(x - 黏连蛋白(SA2))中,XSMC1、XSMC3和XRAD21与另一个亚基XSA2结合。XSA1和XSA2都属于哺乳动物SA家族蛋白,并且与酵母黏连蛋白最近鉴定的组分Scc3p具有相似性。在非洲爪蟾卵提取物中,x - 黏连蛋白(SA1)占主导,而x - 黏连蛋白(SA2)仅占非常小的比例。人类细胞有类似的一对黏连蛋白复合物,但SA2型是体细胞组织培养细胞中的主要形式。免疫定位实验表明,黏连蛋白(SA1)和黏连蛋白(SA2)与染色质的结合可能受到不同的调节。在无细胞提取物中,x - 黏连蛋白(SA1)从染色质上的解离与XSA1的磷酸化相关。纯化的cdc2 - 细胞周期蛋白B在体外可使XSA1磷酸化,并降低x - 黏连蛋白(SA1)与DNA或染色质结合的能力。这些结果揭示了在脊椎动物细胞中,远在后期开始之前的早期有丝分裂过程中姐妹染色单体黏连部分溶解的机制。