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Formation of a dynamic kinetochore-microtubule interface through assembly of the Dam1 ring complex

机译:通过组装Dam1环复合物形成动态的动酶-微管界面

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摘要

How kinetochore proteins form a dynamic interface with microtubules is largely unknown. In budding yeast, the 10-protein Dam1 complex is an Aurora kinase target that plays essential roles maintaining the integrity of the mitotic spindle and regulating interactions with the kinetochore. Here, we investigated the biochemical properties of purified Dam1 complex. The complex oligomerized into rings around microtubules. Ring formation was facilitated by microtubules but could occur in their absence. Mutant alleles led to partially assembled complexes or reduced microtubule binding. The interaction between rings and microtubules is mediated by the C termini of both Dam1 and up-tubulin. Ring formation promotes microtubule assembly, stabilizes against disassembly, and promotes bundling. A GTP-tubulin lattice is the preferred binding partner for the complex, and Dam1 rings can exhibit lateral mobility on microtubules. These observations suggest a mechanism by which the kinetochore can recognize and stay attached to the plus ends of microtubules.
机译:线粒体蛋白如何与微管形成动态界面尚不清楚。在发芽酵母中,10蛋白的Dam1复合物是Aurora激酶的靶标,在维持有丝分裂纺锤体的完整性和调节与线粒体的相互作用中起着至关重要的作用。在这里,我们研究了纯化的Dam1复合物的生化特性。该复合物低聚成围绕微管的环。微管促进了环的形成,但可能在无微管的情况下发生。突变等位基因导致部分组装的复合物或微管结合减少。环和微管之间的相互作用是由Dam1和上微管蛋白的C末端介导的。环的形成促进微管的组装,稳定地防止分解,并促进成束。 GTP-微管蛋白晶格是该复合物的优选结合伴侣,而Dam1环可在微管上表现出横向迁移性。这些观察结果表明,动线粒体可以识别并保持附着在微管正端的机制。

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