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Plo1 phosphorylates Dam1 to promote chromosome bi-orientation in fission yeast

机译:Plo1使Dam1磷酸化,以促进裂变酵母中的染色体双向取向

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摘要

The fungal-specific heterodecameric outer kinetochore DASH complex facilitates the interaction of kinetochores with spindle microtubules. In budding yeast, where kinetochores bind a single microtubule, the DASH complex is essential, and phosphorylation of Dam1 by the Aurora kinase homologue, Ipl1, causes detachment of kinetochores from spindle microtubules. We demonstrate that in the distantly related fission yeast, where the DASH complex is not essential for viability and kinetochores bind multiple microtubules, Dam1 is instead phosphorylated on serine 143 by the Polo kinase homologue, Plo1, during prometaphase and metaphase. This phosphorylation site is conserved in most fungal Dam1 proteins, including budding yeast Dam1. We show that Dam1 phosphorylation by Plo1 is dispensable for DASH assembly and chromosome retrieval but instead aids tension-dependent chromosome bi-orientation.
机译:特定于真菌的异十聚体外部动粒DASH复合物促进了动粒与纺锤体微管的相互作用。在动植物结合单个微管的发芽酵母中,DASH复合物是必不可少的,而极光激酶同源物Ipl1对Dam1的磷酸化会导致动植物与纺锤体微管分离。我们证明,在远缘裂变酵母中,DASH复合物对于生存力不是必不可少的,而动植物结合多个微管,Dam1可以在前中期和中期被Polo激酶同源物Plo1磷酸化在丝氨酸143上。该磷酸化位点在大多数真菌Dam1蛋白(包括出芽的酵母Dam1)中都是保守的。我们显示,由Plo1引起的Dam1磷酸化对于DASH组装和染色体检索而言是可有可无的,而反而有助于依赖于张力的染色体双向取向。

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