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Cnm67p Is a Spacer Protein of the Saccharomyces cerevisiae Spindle Pole Body Outer Plaque

机译:Cnm67p是酵母菌的间隔蛋白 酿酒商主轴极体外部斑块

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摘要

In Saccharomyces cerevisiae, the spindle pole body (SPB) is the functional homolog of the mammalian centrosome, responsible for the organization of the tubulin cytoskeleton. Cytoplasmic (astral) microtubules essential for the proper segregation of the nucleus into the daughter cell are attached at the outer plaque on the SPB cytoplasmic face. Previously, it has been shown that Cnm67p is an integral component of this structure; cells deleted for CNM67 are lacking the SPB outer plaque and thus experience severe nuclear migration defects. With the use of partial deletion mutants of CNM67, we show that the N- and C-terminal domains of the protein are important for nuclear migration. The C terminus, not the N terminus, is essential for Cnm67p localization to the SPB. On the other hand, only the N terminus is subject to protein phosphorylation of a yet unknown function. Electron microscopy of SPB serial thin sections reveals that deletion of the N- or C-terminal domains disturbs outer plaque formation, whereas mutations in the central coiled-coil domain of Cnm67p change the distance between the SPB core and the outer plaque. We conclude that Cnm67p is the protein that connects the outer plaque to the central plaque embedded in the nuclear envelope, adjusting the space between them by the length of its coiled-coil.
机译:在酿酒酵母中,纺锤极体(SPB)是哺乳动物中心体的功能同源物,负责微管蛋白细胞骨架的组织。 SPB细胞质表面的外部噬菌斑上附着了细胞核(星形)微管,这些细胞核正确地将细胞核分离成子细胞。以前,已经证明Cnm67p是该结构的组成部分。缺失CNM67的细胞缺乏SPB外斑,因此会出现严重的核迁移缺陷。通过使用CNM67的部分缺失突变体,我们证明了蛋白质的N-和C-末端结构域对于核迁移很重要。 C末端而非N末端对于Cnm67p定位到SPB是必不可少的。另一方面,仅N末端经受功能未知的蛋白质磷酸化。 SPB系列薄切片的电子显微镜检查显示,N或C末端结构域的缺失会干扰外部噬菌斑的形成,而Cnm67p中央卷曲螺旋结构域的突变会改变 SPB核心与外板之间的距离。我们得出的结论是 Cnm67p是将外部菌斑连接到中央的蛋白质 斑块嵌入核膜,调节之间的空间 按其盘绕线圈的长度。

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