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Ady4p and Spo74p Are Components of the Meiotic Spindle Pole Body That Promote Growth of the Prospore Membrane in Saccharomyces cerevisiae

机译:Ady4p和Spo74p是减数分裂主轴杆体的组成部分可促进酿酒酵母中孢子膜的生长。

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摘要

Spore formation in Saccharomyces cerevisiae occurs via the de novo synthesis of the prospore membrane during the second meiotic division. Prospore membrane formation is triggered by assembly of a membrane-organizing center, the meiotic outer plaque (MOP), on the cytoplasmic face of the spindle pole body (SPB) during meiosis. We report here the identification of two new components of the MOP, Ady4p and Spo74p. Ady4p and Spo74p interact with known proteins of the MOP and are localized to the outer plaque of the SPB during meiosis II. MOP assembly and prospore membrane formation are abolished in spo74Δ/spo74Δ cells and occur aberrantly in ady4Δ/ady4Δ cells. Spo74p and the MOP component Mpc70p are mutually dependent for recruitment to SPBs during meiosis. In contrast, both Ady4p and Spo74p are present at SPBs, albeit at reduced levels, in cells that lack the MOP component Mpc54p. Our findings suggest a model for the assembled MOP in which Mpc54p, Mpc70p, and Spo74p make up a core structural unit of the scaffold that initiates synthesis of the prospore membrane, and Ady4p is an auxiliary component that stabilizes the plaque.
机译:酿酒酵母中的孢子形成是在第二次减数分裂过程中通过从头膜的从头合成发生的。在减数分裂过程中,纺锤体极体(SPB)的细胞质表面上的膜组织中心,减数分裂的外部斑块(MOP)的组装触发了孢子膜的形成。我们在这里报告了MOP的两个新组件Ady4p和Spo74p的鉴定。 Ady4p和Spo74p与MOP的已知蛋白相互作用,并在减数分裂II期间定位于SPB的外部斑块。 spo74Δ/spo74Δ细胞中的MOP组装和孢子膜形成被消除,并且在ady4Δ/ady4Δ细胞中异常发生。在减数分裂期间,Spo74p和MOP组件Mpc70p相互依赖以补充SPB。相反,在缺乏MOP成分Mpc54p的细胞中,Ady4p和Spo74p都存在于SPB中,尽管含量降低了。我们的发现为组装的MOP提供了一个模型,其中Mpc54p,Mpc70p和Spo74p组成了支架的核心结构单元,该支架启动了孢子膜的合成,而Ady4p是稳定斑块的辅助组件。

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