Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Nat Cell Biol. 2012 Aug;14(8):865-73. doi: 10.1038/ncb2527. Epub 2012 Jun 24.
Regulated centrosome biogenesis is required for accurate cell division and for maintaining genome integrity. Centrosomes consist of a centriole pair surrounded by a protein network known as pericentriolar material (PCM). PCM assembly is a tightly regulated, critical step that determines the size and capability of centrosomes. Here, we report a role for tubulin in regulating PCM recruitment through the conserved centrosomal protein Sas-4. Tubulin directly binds to Sas-4; together they are components of cytoplasmic complexes of centrosomal proteins. A Sas-4 mutant, which cannot bind tubulin, enhances centrosomal protein complex formation and has abnormally large centrosomes with excessive activity. These results suggest that tubulin negatively regulates PCM recruitment. Whereas tubulin-GTP prevents Sas-4 from forming protein complexes, tubulin-GDP promotes it. Thus, the regulation of PCM recruitment by tubulin depends on its GTP/GDP-bound state. These results identify a role for tubulin in regulating PCM recruitment independent of its well-known role as a building block of microtubules. On the basis of its guanine-bound state, tubulin can act as a molecular switch in PCM recruitment.
调控中心体的生物发生对于精确的细胞分裂和维持基因组完整性是必需的。中心体由一对中心粒被称为中心粒周围物质(PCM)的蛋白质网络所包围。PCM 的组装是一个严格调控的关键步骤,决定了中心体的大小和功能。在这里,我们通过保守的中心体蛋白 Sas-4 报告了微管蛋白在调控 PCM 募集中的作用。微管蛋白直接与 Sas-4 结合;它们共同构成了中心体蛋白细胞质复合物的组成部分。一种不能结合微管蛋白的 Sas-4 突变体增强了中心体蛋白复合物的形成,具有异常大的中心体和过度活跃。这些结果表明微管蛋白负调控 PCM 的募集。微管蛋白-GTP 阻止 Sas-4 形成蛋白质复合物,而微管蛋白-GDP 则促进其形成。因此,微管蛋白对 PCM 募集的调控取决于其 GTP/GDP 结合状态。这些结果确定了微管蛋白在调控 PCM 募集中的作用,这与其作为微管的构建块的已知作用是独立的。基于其结合鸟嘌呤的状态,微管蛋白可以作为 PCM 募集中的分子开关。