Ottawa Institute of Systems Biology and Department of Biochemistry, Microbiology and Immunology, University of Ottawa, Ottawa, ON, Canada.
University of North Carolina, Chapel Hill, Department of Biology, Chapel Hill, NC, United States of America.
PLoS Genet. 2018 Mar 21;14(3):e1007029. doi: 10.1371/journal.pgen.1007029. eCollection 2018 Mar.
Anaphase onset is an irreversible cell cycle transition that is triggered by the activation of the protease Separase. Separase cleaves the Mcd1 (also known as Scc1) subunit of Cohesin, a complex of proteins that physically links sister chromatids, triggering sister chromatid separation. Separase is regulated by the degradation of the anaphase inhibitor Securin which liberates Separase from inhibitory Securin/Separase complexes. In many organisms, Securin is not essential suggesting that Separase is regulated by additional mechanisms. In this work, we show that in budding yeast Cdk1 activates Separase (Esp1 in yeast) through phosphorylation to trigger anaphase onset. Esp1 activation is opposed by protein phosphatase 2A associated with its regulatory subunit Cdc55 (PP2ACdc55) and the spindle protein Slk19. Premature anaphase spindle elongation occurs when Securin (Pds1 in yeast) is inducibly degraded in cells that also contain phospho-mimetic mutations in ESP1, or deletion of CDC55 or SLK19. This striking phenotype is accompanied by advanced degradation of Mcd1, disruption of pericentric Cohesin organization and chromosome mis-segregation. Our findings suggest that PP2ACdc55 and Slk19 function redundantly with Pds1 to inhibit Esp1 within pericentric chromatin, and both Pds1 degradation and Cdk1-dependent phosphorylation of Esp1 act together to trigger anaphase onset.
后期起始是不可逆的细胞周期转变,由蛋白酶 Separase 的激活触发。 Separase 切割黏合蛋白复合体(Cohesin)的 Mcd1(也称为 Scc1)亚基,该复合体将姐妹染色单体物理连接在一起,引发姐妹染色单体分离。 Separase 受后期抑制剂 Securin 的降解调控,Securin 将 Separase 从抑制性 Securin/Separase 复合物中释放出来。在许多生物中,Securin 不是必需的,这表明 Separase 受到其他机制的调控。在这项工作中,我们表明在芽殖酵母中,Cdk1 通过磷酸化激活 Separase(酵母中的 Esp1)来触发后期起始。 Esp1 的激活受到与其调节亚基 Cdc55(PP2ACdc55)和纺锤体蛋白 Slk19 相关的蛋白磷酸酶 2A(PP2A)的抑制。当 Securin(酵母中的 Pds1)在含有 Esp1 磷酸模拟突变或删除 CDC55 或 SLK19 的细胞中被诱导降解时,过早的后期纺锤体伸长发生。这个引人注目的表型伴随着 Mcd1 的提前降解、着丝粒 Cohesin 组织的破坏和染色体错误分离。我们的发现表明,PP2ACdc55 和 Slk19 与 Pds1 一起在着丝粒染色质中冗余地抑制 Esp1,并且 Pds1 降解和 Cdk1 依赖性 Esp1 磷酸化共同作用触发后期起始。