Baskerville Chris, Segal Marisa, Reed Steven I
Department of Molecular Biology, The Scripps Research Institute, La Jolla, California 92037, USA.
Genetics. 2008 Apr;178(4):2361-72. doi: 10.1534/genetics.107.085308.
Separase is a caspase-family protease required for the metaphase-anaphase transition in eukaryotes. In budding yeast, the separase ortholog, Esp1, has been shown to cleave a subunit of cohesin, Mcd1 (Scc1), thereby releasing sister chromatids from cohesion and allowing anaphase. However, whether Esp1 has other substrates required for anaphase has been controversial. Whereas it has been reported that cleavage of Mcd1 is sufficient to trigger anaphase in the absence of Esp1 activation, another study using a temperature-sensitive esp1 mutant concluded that depletion of Mcd1 was not sufficient for anaphase in the absence of Esp1 function. Here we revisit the issue and demonstrate that neither depletion of Mcd1 nor ectopic cleavage of Mcd1 by Tev1 protease is sufficient to support anaphase in an esp1 temperature-sensitive mutant. Furthermore, we demonstrate that the catalytic activity of the Esp1 protease is required for this Mcd1-independent anaphase function. These data suggest that another protein, possibly a spindle-associated protein, is cleaved by Esp1 to allow anaphase. Such a function is consistent with the previous observation that Esp1 localizes to the mitotic spindle during anaphase.
分离酶是真核生物中期-后期转换所必需的一种半胱天冬酶家族蛋白酶。在芽殖酵母中,分离酶的直系同源物Esp1已被证明可切割黏连蛋白的一个亚基Mcd1(Scc1),从而使姐妹染色单体从黏连状态释放并进入后期。然而,Esp1是否还有后期所需的其他底物一直存在争议。虽然有报道称在没有Esp1激活的情况下,Mcd1的切割足以触发后期,但另一项使用温度敏感型esp1突变体的研究得出结论,在没有Esp1功能的情况下,Mcd1的缺失不足以支持后期。在此我们重新审视这个问题,并证明在esp1温度敏感型突变体中,Mcd1的缺失或Tev1蛋白酶对Mcd1的异位切割都不足以支持后期。此外,我们证明Esp1蛋白酶的催化活性对于这种不依赖Mcd1的后期功能是必需的。这些数据表明,Esp1切割另一种蛋白质(可能是一种纺锤体相关蛋白)以允许进入后期。这种功能与之前观察到的Esp1在后期定位于有丝分裂纺锤体的现象一致。