Ruiz F, Beisson J, Rossier J, Dupuis-Williams P
Centre de Génétique Moléculaire, Centre National de la Recherche, Scientifique 91198, Gif-sur-Yvette, Cedex, France.
Curr Biol. 1999 Jan 14;9(1):43-6. doi: 10.1016/s0960-9822(99)80045-1.
First discovered in the fungus Aspergillus nidulans[1], gamma-tubulin is a ubiquitous component of microtubule organizing centres [2]. In centrosomes, gamma-tubulin has been immunolocalized at the pericentriolar material, suggesting a role in cytoplasmic microtubule nucleation [3], as well as within the centriole core itself [4]. Although its function in the nucleation of the mitotic spindle and of cytoplasmic interphasic microtubules has been demonstrated in vitro [5] [6] and in vivo[7] [8] [9], the hypothesis that gamma-tubulin could intervene in centriole assembly has never been experimentally addressed because the mitotic arrest caused by the inactivation of gamma-tubulin in vivo precludes any further phenotypic analysis of putative centriole defects. The issue can be addressed in the ciliate Paramecium, which is characterized by numerous basal bodies that are similar to centrioles but the biogenesis of which is not tightly coupled to the nuclear division cycle. We demonstrate that the inactivation of the Paramecium gamma-tubulin genes leads to inhibition of basal body duplication.
γ-微管蛋白最早是在构巢曲霉中发现的[1],是微管组织中心普遍存在的组成成分[2]。在中心体中,γ-微管蛋白已通过免疫定位定位于中心粒周围物质,这表明其在细胞质微管成核中发挥作用[3],同时也存在于中心粒核心本身[4]。尽管其在有丝分裂纺锤体和细胞质间期微管成核中的功能已在体外[5][6]和体内[7][8][9]得到证实,但γ-微管蛋白可能参与中心粒组装的假说从未得到实验验证,因为体内γ-微管蛋白失活导致的有丝分裂停滞排除了对假定的中心粒缺陷进行任何进一步表型分析的可能性。这个问题可以在纤毛虫草履虫中进行研究,草履虫的特点是有许多类似于中心粒的基体,但其生物发生与核分裂周期没有紧密联系。我们证明,草履虫γ-微管蛋白基因的失活会导致基体复制受到抑制。