Translational Cancer Research Laboratory, Department of Molecular Medicine, Rajiv Gandhi Centre for Biotechnology, Kerala, India.
J Cell Mol Med. 2010 Jan;14(1-2):154-64. doi: 10.1111/j.1582-4934.2009.00698.x. Epub 2009 Feb 17.
Genetic and biochemical studies have provided considerable insight into the multiple functions of cyclin-dependent kinase subunit (cks)1 in cell division cycle. In addition to enhanced substrate targeting by specific ubiquitin ligases SCF(skp2) and APC/C, its direct interaction with proteasome components normalizes multiple cell cycle regulators. Importantly, it also acts as a transcriptional regulator. cks1 overexpression reflects poor prognosis in malignancy thus indicating its possible role in tumour diagnosis and management. The present review compiles the multiple functional roles of cks1 in cell division with specific emphasis on its molecular mechanisms. Its docking functions and the possible downstream proteolytic and transcriptional targets are described. The spatial configuration of cks1-cdk2 complex and the structural organization of cks1-p27-skp2 assembly required for p27 ubiquitination are discussed in detail. In addition to enhanced p27 degradation, the possible other mechanisms which underlie its pathological functions in human cancer progression are also discussed. Though there are apparent gaps in information, the turnover mechanism of cks1 is well addressed and presents opportunity to exploit the target for disease management.
遗传和生化研究为细胞周期中细胞分裂周期蛋白依赖性激酶亚基(cks1)的多种功能提供了重要的见解。除了通过特定的泛素连接酶 SCF(skp2)和 APC/C 增强底物靶向外,其与蛋白酶体成分的直接相互作用还使多种细胞周期调节剂正常化。重要的是,它还可以作为转录调节剂。cks1 的过表达反映了恶性肿瘤的不良预后,因此表明其在肿瘤诊断和治疗中可能发挥作用。本综述总结了 cks1 在细胞分裂中的多种功能作用,特别强调了其分子机制。描述了其对接功能以及可能的下游蛋白水解和转录靶标。详细讨论了 cks1-cdk2 复合物的空间构象和 cks1-p27-skp2 组装所需的结构组织,以进行 p27 的泛素化。除了增强 p27 降解外,还讨论了其在人类癌症进展中病理功能的其他可能机制。尽管信息明显存在差距,但 cks1 的周转率机制得到了很好的解决,并为疾病管理提供了利用该靶标的机会。