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Systematic Analysis in Caenorhabditis elegans Reveals that the Spindle Checkpoint Is Composed of Two Largely Independent Branches

机译:秀丽隐杆线虫的系统分析表明纺锤体检查站由两个大的独立分支组成

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摘要

Kinetochores use the spindle checkpoint to delay anaphase onset until all chromosomes have formed bipolar attachments to spindle microtubules. Here, we use controlled monopolar spindle formation to systematically define the requirements for spindle checkpoint signaling in the Caenorhabditis elegans embryo. The results, when interpreted in light of kinetochore assembly epistasis analysis, indicate that checkpoint activation is coordinately directed by the NDC-80 complex, the Rod/Zwilch/Zw10 complex, and BUB-1—three components independently targeted to the outer kinetochore by the scaffold protein KNL-1. These components orchestrate the integration of a core Mad1MDF-1/Mad2MDF-2-based signal, with a largely independent Mad3SAN-1/BUB-3 pathway. Evidence for independence comes from the fact that subtly elevating Mad2MDF-2 levels bypasses the requirement for BUB-3 and Mad3SAN-1 in kinetochore-dependent checkpoint activation. Mad3SAN-1 does not accumulate at unattached kinetochores and BUB-3 kinetochore localization is independent of Mad2MDF-2. We discuss the rationale for a bipartite checkpoint mechanism in which a core Mad1MDF-1/Mad2MDF-2 signal generated at kinetochores is integrated with a separate cytoplasmic Mad3SAN-1/BUB-3–based pathway.
机译:动植物利用纺锤体检查点延迟后期发生,直到所有染色体都形成纺锤体微管的双极附件。在这里,我们使用受控的单极纺锤体形成来系统地定义秀丽隐杆线虫胚胎中纺锤体检查点信号的要求。当根据动线粒组装体上位性分析来解释结果时,表明检查点激活由NDC-80复合物,Rod / Zwilch / Zw10复合物和BUB-1协调地指导,这三个成分被NDC-80独立靶向外线粒支架蛋白KNL-1。这些组件协调了基于Mad1 MDF-1 / Mad2 MDF-2 的核心信号与很大程度上独立的Mad3 SAN-1 的集成。 / BUB-3途径。独立性的证据来自这样一个事实,即微调提高Mad2 MDF-2 的水平会绕动线粒依赖的检查点激活而绕过BUB-3和Mad3 SAN-1 的要求。 Mad3 SAN-1 不会在独立的动植物中积累,BUB-3线粒体的定位独立于Mad2 MDF-2 。我们讨论了一种双向检查点机制的原理,在该机制中,在动植物中产生的核心Mad1 MDF-1 / Mad2 MDF-2 信号与单独的细胞质Mad3 整合在一起基于SAN-1 / BUB-3的途径。

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