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GAMMA-TUBULINS AND THEIR FUNCTIONS IN PLANT CELLS

机译:γ-管蛋白及其在植物细胞中的功能

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Higher plants represent an important group of eukaryotes where discrete sites for microtubule nucleation are absent in all mitotic and meiotic cells, and the concept of dispersed microtubule-nucleation sites has been generally accepted. Moreover, even in cells containing centrosomes or spindle pole bodies, microtubules can nucleate non-centrosomally but molecular mechanisms behind the process are so far poorly characterized, γ-Tubulin is a ubiquitous phylogenetically conserved member of tubulin superfamily, present within the cells in various types of microtubule-organizing centers and cytoplasmic protein complexes. Down regulation of γ-tubulin showed its essential role in non-centrosomal nucleation in plants. Plant γ-tubulin is localized with all microtubule arrays, and in nuclei. Protein complexes of γ-tubulin are present in soluble forms in cytoplasm and also with membranes. Association of γ-tubulin complexes with microtubules and dynamic membranes might ensure the flexibility of non-centrosomal microtubule nucleation. However the presence of various molecular forms of y-tubulin suggests that, in addition to its nucleation role, additional roles for non- centrosomal γ-tubulin might exist.
机译:高等植物代表真核生物了离散的点是微管成核在所有的有丝分裂和减数分裂细胞中不存在的一个重要群体,以及分散微管成核位点的概念已被普遍接受。此外,即使在包含中心体或纺锤极体细胞,微管能够成核非centrosomally但过程背后的分子机制到目前为止特征较差,γ微管蛋白是在各种类型细胞内普遍存在的系统发育保守的微管蛋白的构件超家族,本微管组织中心和胞浆蛋白复合物。向下γ微管蛋白的调控表现在植物中的非中心体核的重要作用。植物γ微管蛋白是局部与所有微管排列,并且在细胞核。 γ微管蛋白的蛋白复合物是存在于细胞质中,并且还与膜的可溶形式。与微管和动态膜γ微管蛋白复合物的关联可能确保非中心体微管形核的灵活性。然而Y型微管蛋白的各种分子形式存在表明,除了其核作用,还可能存在与非中心体γ微管蛋白其他角色。

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