Fry A M, Descombes P, Twomey C, Bacchieri R, Nigg E A
Department of Biochemistry, University of Leicester, Adrian Building, University Road, Leicester LE1 7RH, UK.
J Cell Sci. 2000 Jun;113 ( Pt 11):1973-84. doi: 10.1242/jcs.113.11.1973.
Nek2 is a mammalian cell cycle-regulated serine/threonine kinase that belongs to the family of proteins related to NIMA of Aspergillus nidulans. Functional studies in diverse species have implicated NIMA-related kinases in G(2)/M progression, chromatin condensation and centrosome regulation. To directly address the requirements for vertebrate Nek2 kinases in these cell cycle processes, we have turned to the biochemically-tractable system provided by Xenopus laevis egg extracts. Following isolation of a Xenopus homologue of Nek2, called X-Nek2B, we found that X-Nek2B abundance and activity remained constant through the first mitotic cycle implying a fundamental difference in Nek2 regulation between embryonic and somatic cell cycles. Removal of X-Nek2B from extracts did not disturb either entry into mitosis or the accompanying condensation of chromosomes providing no support for a requirement for Nek2 in these processes at least in embryonic cells. In contrast, X-Nek2B localized to centrosomes of adult Xenopus cells and was rapidly recruited to the basal body of Xenopus sperm following incubation in egg extracts. Recruitment led to phosphorylation of the X-Nek2B kinase. Most importantly, depletion of X-Nek2B from extracts significantly delayed both the assembly of microtubule asters and the recruitment of gamma-tubulin to the basal body. Hence, these studies demonstrate that X-Nek2B is required for efficient assembly of a functional zygotic centrosome and highlight the possibility of multiple roles for vertebrate Nek2 kinases in the centrosome cycle.
Nek2是一种受哺乳动物细胞周期调控的丝氨酸/苏氨酸激酶,属于与构巢曲霉NIMA相关的蛋白质家族。对不同物种的功能研究表明,NIMA相关激酶参与G(2)/M期进程、染色质凝聚和中心体调控。为了直接研究脊椎动物Nek2激酶在这些细胞周期过程中的作用,我们采用了非洲爪蟾卵提取物提供的易于进行生化研究的系统。在分离出Nek2的非洲爪蟾同源物X-Nek2B后,我们发现X-Nek2B的丰度和活性在第一个有丝分裂周期中保持恒定,这意味着胚胎细胞周期和体细胞周期中Nek2的调控存在根本差异。从提取物中去除X-Nek2B既不影响进入有丝分裂,也不影响随之而来的染色体凝聚,这至少在胚胎细胞中表明这些过程不需要Nek2。相比之下,X-Nek2B定位于成年非洲爪蟾细胞的中心体,并且在卵提取物中孵育后迅速被募集到非洲爪蟾精子的基体。募集导致X-Nek2B激酶磷酸化。最重要的是,从提取物中耗尽X-Nek2B显著延迟了微管星状体的组装以及γ-微管蛋白向基体的募集。因此,这些研究表明X-Nek2B是功能性合子中心体有效组装所必需的,并突出了脊椎动物Nek2激酶在中心体周期中具有多种作用的可能性。