首页> 美国卫生研究院文献>Genetics >Loss of CDC5 function in Saccharomyces cerevisiae leads to defects in Swe1p regulation and Bfa1p/Bub2p-independent cytokinesis.
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Loss of CDC5 function in Saccharomyces cerevisiae leads to defects in Swe1p regulation and Bfa1p/Bub2p-independent cytokinesis.

机译:酿酒酵母中CDC5功能的丧失会导致Swe1p调控和Bfa1p / Bub2p依赖性胞质分裂的缺陷。

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摘要

In many organisms, polo kinases appear to play multiple roles during M-phase progression. To provide new insights into the function of budding yeast polo kinase Cdc5p, we generated novel temperature-sensitive cdc5 mutants by mutagenizing the C-terminal domain. Here we show that, at a semipermissive temperature, the cdc5-3 mutant exhibited a synergistic bud elongation and growth defect with loss of HSL1, a component important for normal G(2)/M transition. Loss of SWE1, which phosphorylates and inactivates the budding yeast Cdk1 homolog Cdc28p, suppressed the cdc5-3 hsl1Delta defect, suggesting that Cdc5p functions at a point upstream of Swe1p. In addition, the cdc5-4 and cdc5-7 mutants exhibited chained cell morphologies with shared cytoplasms between the connected cell bodies, indicating a cytokinetic defect. Close examination of these mutants revealed delayed septin assembly at the incipient bud site and loosely organized septin rings at the mother-bud neck. Components in the mitotic exit network (MEN) play important roles in normal cytokinesis. However, loss of BFA1 or BUB2, negative regulators of the MEN, failed to remedy the cytokinetic defect of these mutants, indicating that Cdc5p promotes cytokinesis independently of Bfa1p and Bub2p. Thus, Cdc5p contributes to the activation of the Swe1p-dependent Cdc28p/Clb pathway, normal septin function, and cytokinesis.
机译:在许多生物中,马球激酶似乎在M期进程中发挥多种作用。为了提供对发芽的酵母polo激酶Cdc5p的功能的新见解,我们通过诱变C末端域生成了新型的温度敏感cdc5突变体。在这里,我们显示,在半宽容温度下,cdc5-3突变体表现出协同芽伸长和生长缺陷,并且损失了HSL1(对于正常G(2)/ M过渡很重要的成分)。 SWE1的丢失使磷酸化的芽孢酵母Cdk1同系物Cdc28p磷酸化并使其失活,从而抑制了cdc5-3 hsl1Delta缺陷,这表明Cdc5p在Swe1p的上游起作用。此外,cdc5-4和cdc5-7突变体表现出链状细胞形态,在相连的细胞体之间具有共享的细胞质,表明存在细胞动力学缺陷。对这些突变体的仔细检查显示,在初生芽部位的间隔素组装延迟,而在母亲芽颈处的间隔素环组织松散。有丝分裂出口网络(MEN)中的成分在正常胞质分裂中起重要作用。但是,MEN的负调节剂BFA1或BUB2的丢失无法弥补这些突变体的细胞动力学缺陷,这表明Cdc5p可以独立于Bfa1p和Bub2p促进胞质分裂。因此,Cdc5p有助于Swe1p依赖的Cdc28p / Clb途径,正常的Septin功能和胞质分裂的激活。

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