Bolanos-Garcia Victor M
Faculty of Health and Life Sciences, Department of Biological and Medical Sciences, Oxford Brookes University, Oxford, OX3 0BP, UK.
Subcell Biochem. 2017;83:455-481. doi: 10.1007/978-3-319-46503-6_16.
Mistakes in the process of cell division can lead to the loss, gain or rearrangement of chromosomes. Significant chromosomal abnormalities are usually lethal to the cells and cause spontaneous miscarriages. However, in some cases, defects in the spindle assembly checkpoint lead to severe diseases, such as cancer and birth and development defects, including Down's syndrome. The timely and accurate control of chromosome segregation in mitosis relies on the spindle assembly checkpoint (SAC), an evolutionary conserved, self-regulated signalling system present in higher organisms. The spindle assembly checkpoint is orchestrated by dynamic interactions between spindle microtubules and the kinetochore , a multiprotein complex that constitutes the site for attachment of chromosomes to microtubule polymers to pull sister chromatids apart during cell division. This chapter discusses the current molecular understanding of the essential, highly dynamic molecular interactions underpinning spindle assembly checkpoint signalling and how the complex choreography of interactions can be coordinated in time and space to finely regulate the process. The potential of targeting this signalling pathway to interfere with the abnormal segregation of chromosomes, which occurs in diverse malignancies and the new opportunities that recent technological developments are opening up for a deeper understanding of the spindle assembly checkpoint are also discussed.
细胞分裂过程中的错误会导致染色体的丢失、增加或重排。显著的染色体异常通常对细胞是致命的,并会导致自然流产。然而,在某些情况下,纺锤体组装检查点的缺陷会导致严重疾病,如癌症以及出生和发育缺陷,包括唐氏综合征。有丝分裂过程中染色体分离的及时和准确控制依赖于纺锤体组装检查点(SAC),这是一种存在于高等生物中的进化保守、自我调节的信号系统。纺锤体组装检查点是由纺锤体微管与动粒之间的动态相互作用所协调的,动粒是一种多蛋白复合体,在细胞分裂过程中构成染色体与微管聚合物附着的位点,以便拉开姐妹染色单体。本章讨论了目前对支撑纺锤体组装检查点信号传导的基本、高度动态分子相互作用的分子理解,以及相互作用的复杂编排如何在时间和空间上进行协调以精确调节这一过程。还讨论了靶向该信号通路以干扰在各种恶性肿瘤中发生的染色体异常分离的潜力,以及近期技术发展为更深入理解纺锤体组装检查点所带来的新机遇。