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首页> 外文期刊>Cell Reports >Identification of a Sgo2-Dependent but Mad2-Independent Pathway Controlling Anaphase Onset in Fission Yeast
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Identification of a Sgo2-Dependent but Mad2-Independent Pathway Controlling Anaphase Onset in Fission Yeast

机译:裂变酵母中依赖Sgo2但Mad2独立的途径控制后期发病的鉴定。

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The onset of anaphase is triggered by activation of the anaphase-promoting complex/cyclosome (APC/C) following silencing of the spindle assembly checkpoint (SAC). APC/C triggers ubiquitination of Securin and Cyclin B, which leads to loss of sister chromatid cohesion and inactivation of Cyclin B/Cdk1, respectively. This promotes relocalization of Aurora B kinase and other components of the chromosome passenger complex (CPC) from centromeres to the spindle midzone. In fission yeast, this is mediated by Clp1 phosphatase-dependent interaction of CPC with Klp9/MKLP2 (kinesin-6). When this interaction is disrupted, kinetochores bi-orient normally, but APC/C activation is delayed via a mechanism that requires Sgo2 and some (Bub1, Mph1/Mps1, and Mad3), but not all (Mad1 and Mad2), components of the SAC and the first, but not second, lysine, glutamic acid, asparagine (KEN) box in Mad3. These data indicate that interaction of CPC with Klp9 terminates a Sgo2-dependent, but Mad2-independent, APC/C-inhibitory pathway that is distinct from the canonical SAC.
机译:在锭子装配检查点(SAC)沉默后,激活后期促进复合物/环体(APC / C)触发了后期的开始。 APC / C触发Securin和Cyclin B泛素化,分别导致姐妹染色单体内聚力丧失和Cyclin B / Cdk1失活。这促进了极光B激酶和染色体过客群(CPC)的其他组件从着丝粒到纺锤体中间区的重新定位。在裂变酵母中,这是由CPC与Klp9 / MKLP2(驱动蛋白6)的Clp1磷酸酶依赖性相互作用介导的。当这种相互作用被破坏时,动植物通常是双向的,但是APC / C激活是通过一种机制来延迟的,该机制需要Sgo2和某些(Bub1,Mph1 / Mps1和Mad3)但不是全部(Mad1,Mad2)的组成部分。 SAC和Mad3中的第一个(但不是第二个)赖氨酸,谷氨酸,天冬酰胺(KEN)盒。这些数据表明CPC与Klp9的相互作用终止了与经典SAC不同的Sgo2依赖性,但Mad2依赖性的APC / C抑制途径。

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