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gamma-Tubulin-like Tub4p of Saccharomyces cerevisiae is associated with the spindle pole body substructures that organize microtubules and is required for mitotic spindle formation

机译:酿酒酵母的γ-微管蛋白样Tub4p与组织微管的纺锤极体子结构有关,是有丝分裂纺锤体形成所必需的。

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摘要

Tub4p is a novel tubulin in Saccharomyces cerevisiae that most closely resembles gamma-tubulin. We report in this manuscript that the essential Tub4p is associated with the inner and outer plaques of the yeast microtubule organizing center, the spindle pole body (SPB). These SPB substructures are involved in the attachment of the nuclear and cytoplasmic microtubules, respectively (Byers, B., and L. Goetsch. 1975. J. Bacteriol. 124:511-523). Study of a temperature sensitive tub4-1 allele revealed that TUB4 has essential functions in microtubule organization. Remarkably, SPB duplication and separation are not impaired in tub4-1 cells incubated at the nonpermissive temperature. However, SPBs from such cells contain less or misdirected nuclear microtubules. Further analysis revealed that tub4-1 cells are able to assemble a short bipolar spindle, suggesting that the defect in microtubule organization occurs after spindle formation. A role of Tub4p in microtubule organization is further suggested by an increase in chromosome loss in tub4-1 cells. In addition, cell cycle arrest and survival of tub4-1 cells is dependent on the mitotic checkpoint control gene BUB2 (Hoyt, M.A., L. Totis, B.T. Roberts. 1991. Cell. 66:507-517), one of the cell's monitors of spindle integrity.
机译:Tub4p是酿酒酵母中的一种新型微管蛋白,与γ-微管蛋白最相似。我们在这份手稿中报告说,必需的Tub4p与酵母微管组织中心,纺锤极体(SPB)的内部和外部噬菌斑相关。这些SPB亚结构分别参与核和细胞质微管的附着(Byers,B。和L.Goetsch.1975.J.Bacteriol.124:511-523)。对温度敏感的tub4-1等位基因的研究表明,TUB4在微管组织中具有必不可少的功能。值得注意的是,在非许可温度下孵育的tub4-1细胞中,SPB的复制和分离不会受到损害。但是,来自此类细胞的SPB包含较少或方向错误的核微管。进一步的分析表明,tub4-1细胞能够组装短的双极纺锤体,表明微管组织的缺陷发生在纺锤体形成之后。 Tub4p在微管组织中的作用由tub4-1细胞中染色体丢失的增加进一步暗示。另外,tub4-1细胞的细胞周期停滞和存活取决于有丝分裂检查点控制基因BUB2(Hoyt,MA,L.Totis,BT Roberts。1991. Cell。66:507-517),该细胞的监测器之一主轴完整性。

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