Delgehyr Nathalie, Sillibourne James, Bornens Michel
Institut Curie, Research Section/UMR144 du Centre National de la Recherche Scientifique, 26 rue d'Ulm, 75248 Paris Cedex 05, France.
J Cell Sci. 2005 Apr 15;118(Pt 8):1565-75. doi: 10.1242/jcs.02302. Epub 2005 Mar 22.
The centrosome organizes microtubules by controlling nucleation and anchoring processes. In mammalian cells, subdistal appendages of the mother centriole are major microtubule-anchoring structures of the centrosome. It is not known how newly nucleated microtubules are anchored to these appendages. We show here that ninein, a component of subdistal appendages, localizes to the centriole via its C-terminus and interacts with gamma-tubulin-containing complexes via its N-terminus. Expression of a construct encoding the ninein C-terminus displaced endogenous ninein and the gamma-tubulin ring complex (gamma-TuRC) from the centrosome, leading to microtubule nucleation and anchoring defects. By contrast, expression of a fusion consisting of the N- and C-terminal domains (lacking the central coiled-coil region) displaced endogenous ninein without perturbing gamma-TuRC localization. Accordingly, only anchoring defects were observed in this case. Therefore, expression of this fusion appeared to uncouple microtubule nucleation and anchorage activities at the centrosome. Our results suggest that ninein has a role not only in microtubule anchoring but also in promoting microtubule nucleation by docking the gamma-TuRC at the centrosome. In addition, we show that the gamma-TuRC might not be sufficient to anchor microtubules at the centrosome in the absence of ninein. We therefore propose that ninein constitutes a molecular link between microtubule-nucleation and -anchoring activities at the centrosome.
中心体通过控制微管的成核和锚定过程来组织微管。在哺乳动物细胞中,母中心粒的亚远端附属物是中心体主要的微管锚定结构。目前尚不清楚新形成的微管是如何锚定到这些附属物上的。我们在此表明,亚远端附属物的一个组成部分九蛋白(ninein)通过其C末端定位于中心粒,并通过其N末端与含γ-微管蛋白的复合物相互作用。编码九蛋白C末端的构建体的表达将内源性九蛋白和γ-微管蛋白环复合物(γ-TuRC)从中心体上置换下来,导致微管成核和锚定缺陷。相比之下,由N末端和C末端结构域组成(缺少中央卷曲螺旋区域)的融合蛋白的表达置换了内源性九蛋白,而不干扰γ-TuRC的定位。因此,在这种情况下仅观察到锚定缺陷。所以,这种融合蛋白的表达似乎使中心体处的微管成核和锚定活性解偶联。我们的结果表明,九蛋白不仅在微管锚定中起作用,而且通过将γ-TuRC对接在中心体上促进微管成核。此外,我们表明,在没有九蛋白的情况下,γ-TuRC可能不足以将微管锚定在中心体上。因此,我们提出九蛋白构成了中心体处微管成核和锚定活性之间的分子连接。