Fong Ka-Wing, Choi Yuk-Kwan, Rattner Jerome B, Qi Robert Z
Department of Biochemistry, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.
Mol Biol Cell. 2008 Jan;19(1):115-25. doi: 10.1091/mbc.e07-04-0371. Epub 2007 Oct 24.
Microtubule nucleation and organization by the centrosome require gamma-tubulin, a protein that exists in a macromolecular complex called the gamma-tubulin ring complex (gammaTuRC). We report characterization of CDK5RAP2, a novel centrosomal protein whose mutations have been linked to autosomal recessive primary microcephaly. In somatic cells, CDK5RAP2 localizes throughout the pericentriolar material in all stages of the cell cycle. When overexpressed, CDK5RAP2 assembled a subset of centrosomal proteins including gamma-tubulin onto the centrosomes or under the microtubule-disrupting conditions into microtubule-nucleating clusters in the cytoplasm. CDK5RAP2 associates with the gammaTuRC via a short conserved sequence present in several related proteins found in a range of organisms from fungi to mammals. The binding of CDK5RAP2 is required for gammaTuRC attachment to the centrosome but not for gammaTuRC assembly. Perturbing CDK5RAP2 function delocalized gamma-tubulin from the centrosomes and inhibited centrosomal microtubule nucleation, thus leading to disorganization of interphase microtubule arrays and formation of anastral mitotic spindles. Together, CDK5RAP2 is a pericentriolar structural component that functions in gammaTuRC attachment and therefore in the microtubule organizing function of the centrosome. Our findings suggest that centrosome malfunction due to the CDK5RAP2 mutations may underlie autosomal recessive primary microcephaly.
中心体介导的微管成核和组织需要γ-微管蛋白,这种蛋白质存在于一种称为γ-微管蛋白环复合物(γTuRC)的大分子复合物中。我们报告了CDK5RAP2的特征,它是一种新型的中心体蛋白,其突变与常染色体隐性原发性小头畸形有关。在体细胞中,CDK5RAP2在细胞周期的所有阶段都定位于整个中心粒周围物质。当过度表达时,CDK5RAP2会将包括γ-微管蛋白在内的一部分中心体蛋白组装到中心体上,或者在微管破坏条件下组装到细胞质中的微管成核簇中。CDK5RAP2通过存在于从真菌到哺乳动物等一系列生物体中发现的几种相关蛋白质中的一个短保守序列与γTuRC结合。CDK5RAP2的结合是γTuRC附着于中心体所必需的,但不是γTuRC组装所必需的。干扰CDK5RAP2的功能会使γ-微管蛋白从中心体上脱离,并抑制中心体微管成核,从而导致间期微管阵列紊乱和无星有丝分裂纺锤体的形成。总之,CDK5RAP2是一种中心粒周围结构成分,在γTuRC附着中起作用,因此在中心体的微管组织功能中起作用。我们的研究结果表明,由于CDK5RAP2突变导致的中心体功能障碍可能是常染色体隐性原发性小头畸形的基础。