Fry A M, Mayor T, Meraldi P, Stierhof Y D, Tanaka K, Nigg E A
Department of Molecular Biology, Sciences II, University of Geneva, CH-1211 Geneva 4, Switzerland.
J Cell Biol. 1998 Jun 29;141(7):1563-74. doi: 10.1083/jcb.141.7.1563.
Nek2 (for NIMA-related kinase 2) is a mammalian cell cycle-regulated kinase structurally related to the mitotic regulator NIMA of Aspergillus nidulans. In human cells, Nek2 associates with centrosomes, and overexpression of active Nek2 has drastic consequences for centrosome structure. Here, we describe the molecular characterization of a novel human centrosomal protein, C-Nap1 (for centrosomal Nek2-associated protein 1), first identified as a Nek2-interacting protein in a yeast two-hybrid screen. Antibodies raised against recombinant C-Nap1 produced strong labeling of centrosomes by immunofluorescence, and immunoelectron microscopy revealed that C-Nap1 is associated specifically with the proximal ends of both mother and daughter centrioles. On Western blots, anti-C-Nap1 antibodies recognized a large protein (>250 kD) that was highly enriched in centrosome preparations. Sequencing of overlapping cDNAs showed that C-Nap1 has a calculated molecular mass of 281 kD and comprises extended domains of predicted coiled-coil structure. Whereas C-Nap1 was concentrated at centrosomes in all interphase cells, immunoreactivity at mitotic spindle poles was strongly diminished. Finally, the COOH-terminal domain of C-Nap1 could readily be phosphorylated by Nek2 in vitro, as well as after coexpression of the two proteins in vivo. Based on these findings, we propose a model implicating both Nek2 and C-Nap1 in the regulation of centriole-centriole cohesion during the cell cycle.
Nek2(NIMA相关激酶2)是一种在哺乳动物细胞周期中受调控的激酶,其结构与构巢曲霉的有丝分裂调节因子NIMA相关。在人类细胞中,Nek2与中心体相关,活性Nek2的过表达会对中心体结构产生严重影响。在此,我们描述了一种新型人类中心体蛋白C-Nap1(中心体Nek2相关蛋白1)的分子特征,它最初是在酵母双杂交筛选中作为Nek2相互作用蛋白被鉴定出来的。针对重组C-Nap1产生的抗体通过免疫荧光对中心体进行了强烈标记,免疫电子显微镜显示C-Nap1特异性地与母中心粒和子中心粒的近端相关联。在蛋白质免疫印迹分析中,抗C-Nap1抗体识别出一种在中心体制备物中高度富集的大蛋白(>250 kD)。重叠cDNA的测序表明,C-Nap1的计算分子量为281 kD,包含预测的卷曲螺旋结构的延伸结构域。虽然C-Nap1在所有间期细胞的中心体中都有集中分布,但在有丝分裂纺锤体极的免疫反应性明显降低。最后,C-Nap1的COOH末端结构域在体外以及在体内两种蛋白共表达后都能很容易地被Nek2磷酸化。基于这些发现,我们提出了一个模型,认为Nek2和C-Nap1都参与细胞周期中中心粒-中心粒黏附的调节。