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Unique Phylogenetic Distributions of the Ska and Dam1 Complexes Support Functional Analogy and Suggest Multiple Parallel Displacements of Ska by Dam1

机译:Ska和Dam1配合物的独特系统发生分布支持功能类比并建议Dam1对Ska进行多个平行置换

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摘要

Faithful chromosome segregation relies on kinetochores, the large protein complexes that connect chromatin to spindle microtubules. Although human and yeast kinetochores are largely homologous, they track microtubules with the unrelated protein complexes Ska (Ska-C, human) and Dam1 (Dam1-C, yeast). We here uncovered that Ska-C and Dam1-C are both widespread among eukaryotes, but in an exceptionally inverse manner, supporting their functional analogy. Within the complexes, all Ska-C and various Dam1-C subunits are ancient paralogs, showing that gene duplication shaped these complexes. We examined various evolutionary scenarios to explain the nearly mutually exclusive patterns of Ska-C and Dam1-C in present-day species. We propose that Ska-C was present in the last eukaryotic common ancestor, that subsequently Dam1-C displaced Ska-C in an early fungus and was horizontally transferred to diverse non-fungal lineages, displacing Ska-C in these lineages too.
机译:忠实的染色体分离依赖于动子体,这是将染色质连接到纺锤体微管的大型蛋白质复合体。尽管人和酵母的动植物在很大程度上是同源的,但它们跟踪的微管具有不相关的蛋白质复合物Ska(Ska-C,人)和Dam1(Dam1-C,酵母)。我们在这里发现Ska-C和Dam1-C都在真核生物中广泛分布,但是以异常相反的方式,支持它们的功能类比。在复合物中,所有Ska-C和各种Dam1-C亚基都是古老的旁系同源物,表明基因重复形成了这些复合物。我们研究了各种进化场景,以解释当今物种中Ska-C和Dam1-C几乎互斥的模式。我们建议Ska-C存在于最后一个真核共同祖先中,随后Dam1-C在早期真菌中取代了Ska-C,并水平转移到各种非真菌谱系中,也取代了这些谱系中的Ska-C。

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