Fava F, Raynaud-Messina B, Leung-Tack J, Mazzolini L, Li M, Guillemot J C, Cachot D, Tollon Y, Ferrara P, Wright M
Institut de Pharmacologie et de Biologie Structurale, Centre National de la Recherche Scientifique, 31400 Toulouse, France.
J Cell Biol. 1999 Nov 15;147(4):857-68. doi: 10.1083/jcb.147.4.857.
The role of the centrosomes in microtubule nucleation remains largely unknown at the molecular level. gamma-Tubulin and the two associated proteins h103p (hGCP2) and h104p (hGCP3) are essential. These proteins are also present in soluble complexes containing additional polypeptides. Partial sequencing of a 76- kD polypeptide band from these complexes allowed the isolation of a cDNA encoding for a new protein (h76p = hGCP4) expressed ubiquitously in mammalian tissues. Orthologues of h76p have been characterized in Drosophila and in the higher plant Medicago. Several pieces of evidence indicate that h76p is involved in microtubule nucleation. (1) h76p is localized at the centrosome as demonstrated by immunofluorescence. (2) h76p and gamma-tubulin are associated in the gamma-tubulin complexes. (3) gamma-tubulin complexes containing h76p bind to microtubules. (4) h76p is recruited to the spindle poles and to Xenopus sperm basal bodies. (5) h76p is necessary for aster nucleation by sperm basal bodies and recombinant h76p partially replaces endogenous 76p in oocyte extracts. Surprisingly, h76p shares partial sequence identity with human centrosomal proteins h103p and h104p, suggesting a common protein core. Hence, human gamma-tubulin appears associated with at least three evolutionary related centrosomal proteins, raising new questions about their functions at the molecular level.
在分子水平上,中心体在微管成核过程中的作用仍 largely unknown。γ-微管蛋白以及两种相关蛋白h103p(hGCP2)和h104p(hGCP3)至关重要。这些蛋白也存在于含有其他多肽的可溶性复合物中。对这些复合物中一条76-kD多肽条带进行部分测序,使得能够分离出一个编码在哺乳动物组织中普遍表达的新蛋白(h76p = hGCP4)的cDNA。h76p的直系同源物已在果蝇和高等植物苜蓿中得到鉴定。几条证据表明h76p参与微管成核。(1)免疫荧光显示h76p定位于中心体。(2)h76p和γ-微管蛋白在γ-微管蛋白复合物中相关联。(3)含有h76p的γ-微管蛋白复合物与微管结合。(4)h76p被募集到纺锤体极和非洲爪蟾精子基体。(5)h76p是精子基体形成星体所必需的,并且重组h76p在卵母细胞提取物中部分替代内源性76p。令人惊讶的是,h76p与人中心体蛋白h103p和h104p具有部分序列同一性,表明存在一个共同的蛋白核心。因此,人γ-微管蛋白似乎与至少三种进化相关的中心体蛋白相关联,这在分子水平上对它们的功能提出了新问题。