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Mutation of a Drosophila gamma tubulin ring complex subunit encoded by discs degenerate-4 differentially disrupts centrosomal protein localization

机译:由碟片简并4编码的果蝇γ微管蛋白环复合物亚基的突变差异性地破坏了中心体蛋白的定位

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摘要

We have cloned the Drosophila gene discs degenerate-4 (dd4) and find that it encodes a component of the γ-tubulin ring complex (γTuRC) homologous to Spc98 of budding yeast. This provides the first opportunity to study decreased function of a member of the γ-tubulin ring complex, other than γ-tubulin itself, in a metazoan cell. γ-tubulin is no longer at the centrosomes but is dispersed throughout dd4 cells and yet bipolar metaphase spindles do form, although these have a dramatically decreased density of microtubules. Centrosomin (CNN) remains in broad discrete bodies but only at the focused poles of such spindles, whereas Asp (abnormal spindle protein) is always present at the presumptive minus ends of microtubules, whether or not they are focused. This is consistent with the proposed role of Asp in coordinating the nucleation of mitotic microtubule organizing centers. The centrosome associated protein CP190 is partially lost from the spindle poles in dd4 cells supporting a weak interaction with γ-tubulin, and the displaced protein accumulates in the vicinity of chromosomes. Electron microscopy indicates not only that the poles of dd4 cells have irregular amounts of pericentriolar material, but also that they can have abnormal centrioles. In six dd4 cells subjected to serial sectioning centrioles were missing from one of the two poles. This suggests that in addition to its role in nucleating cytoplasmic and spindle microtubules, the γTuRC is also essential to the structure of centrioles and the separation of centrosomes.
机译:我们已经克隆了果蝇基因光盘简并4(dd4),发现它编码与萌芽酵母的Spc98同源的γ-微管蛋白环复合物(γTuRC)的组成部分。这为研究后生动物中除γ-微管蛋白本身以外的γ-微管蛋白环复合物的功能下降提供了第一个机会。 γ-微管蛋白不再存在于中心体,而是分散在整个dd4细胞中,但确实形成了双极中期纺锤体,尽管这些纺锤体具有显着降低的微管密度。 Centrosomin(CNN)保留在广泛的离散体中,但仅在此类纺锤体的聚焦极处存在,而无论是否聚焦,Asp(异常纺锤体蛋白)始终存在于假定的微管负端。这与Asp在协调有丝分裂微管组织中心的成核中所提出的作用相一致。中心体相关蛋白CP190在dd4细胞中从纺锤极中部分丢失,支持与γ-微管蛋白的弱相互作用,并且被置换的蛋白积聚在染色体附近。电子显微镜不仅表明dd4细胞的两极具有不规则数量的中心小周物质,而且还表明它们可能具有异常的中心小室。在经历连续切片中心的六个dd4细胞中,两个极点之一缺失。这表明,γTuRC除了在使细胞质和纺锤体微管成核中发挥作用外,对于中心粒的结构和中心粒的分离也是必不可少的。

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