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Brr6 drives the Schizosaccharomyces pombe spindle pole body nuclear envelope insertion/extrusion cycle

机译:Brr6驱动粟酒裂殖酵母纺锤体极体核包膜的插入/挤压循环

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The fission yeast interphase spindle pole body (SPB) is a bipartite structure in which a bulky cytoplasmic domain is separated from a nuclear component by the nuclear envelope. During mitosis, the SPB is incorporated into a fenestra that forms within the envelope during mitotic commitment. Closure of this fenestra during anaphase B/mitotic exit returns the cytoplasmic component to the cytoplasmic face of an intact interphase nuclear envelope. Here we show that Brr6 is transiently recruited to SPBs at both SPB insertion and extrusion. Brr6 is required for both SPB insertion and nuclear envelope integrity during anaphase B/mitotic exit. Genetic interactions with apq12 and defective sterol assimilation suggest that Brr6 may alter envelope composition at SPBs to promote SPB insertion and extrusion. The restriction of the Brr6 domain to eukaryotes that use a polar fenestra in an otherwise closed mitosis suggests a conserved role in fenestration to enable a single microtubule organizing center to nucleate both cytoplasmic and nuclear microtubules on opposing sides of the nuclear envelope.
机译:裂变酵母相间纺锤体(SPB)是一种二分结构,其中大的胞质结构域通过核被膜与核成分分开。在有丝分裂期间,SPB被并入在有丝分裂期间在包膜内形成的窗孔中。在后期B /有丝分裂退出期间关闭该窗孔,将细胞质成分返回到完整的相间核被膜的细胞质面。在这里,我们显示Brr6在SPB插入和挤出时都被临时招募到SPB。在后期B /有丝分裂退出过程中,SPB插入和核包膜完整性均需要Brr6。与apq12和有缺陷的固醇同化的遗传相互作用表明Brr6可能会改变SPB处的包膜成分,从而促进SPB的插入和挤出。将Brr6结构域限制为在极性封闭的有丝分裂中使用极地窗孔的真核生物,这表明在开窗中的保守作用使单个微管组织中心能够在核被膜的相对侧成核细胞质和核微管。

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