Dai Wei, Wang Xiaoxing
Division of Molecular Carcinogenesis, Department of Medicine, New York Medical College, Valhalla, NY 10595, USA.
Sci Aging Knowledge Environ. 2006 Apr 5;2006(7):pe9. doi: 10.1126/sageke.2006.7.pe9.
The spindle checkpoint monitors the interaction between spindle microtubules and kinetochores to prevent precocious entry into anaphase, delaying this stage of mitosis until all condensed chromosomes have been attached to the mitotic spindle in a bi-oriented manner (so that the two kinetochores associated with a pair of sister chromatids are oriented toward opposite poles of the spindle). In addition to conserved Bub and Mad family members, which are known to function in the spindle checkpoint pathway in organisms ranging from yeast to mammals, two mRNA transport genes, Rae1 and Nup9, are also involved in the spindle checkpoint function in mammals. Biochemically, activated spindle checkpoint components have been shown to suppress the activity of the anaphase promoting complex/cyclosome. It is generally thought that decreased activity of the checkpoint components predisposes cells to chromosomal instability, aneuploidy, and malignant transformation. Interestingly, a recent study has shed light on a new function of the spindle checkpoint components Bub3 and Rae1 in the regulation of aging. Mice with haploinsufficiency of Bub3 and Rae1 have a short life span that is associated with the early onset of aging-related features. The progeroid phenotypes caused by deficiency of Bub3 and Rae1 are tightly linked to precocious activation of cellular senescence, but not apoptotic, programs. Therefore, premature aging, rather than neoplastic transformation, may be the major manifestation of a compromised spindle checkpoint in vivo.
纺锤体检查点监测纺锤体微管与动粒之间的相互作用,以防止过早进入后期,将有丝分裂的这一阶段推迟到所有浓缩染色体都以双定向方式附着到有丝分裂纺锤体上(这样与一对姐妹染色单体相关的两个动粒就朝向纺锤体的相反两极)。除了已知在从酵母到哺乳动物等生物体的纺锤体检查点途径中发挥作用的保守的Bub和Mad家族成员外,两个mRNA转运基因Rae1和Nup9也参与哺乳动物的纺锤体检查点功能。在生物化学方面,已证明激活的纺锤体检查点成分可抑制后期促进复合体/细胞周期体的活性。一般认为,检查点成分活性降低会使细胞易发生染色体不稳定、非整倍体和恶性转化。有趣的是,最近一项研究揭示了纺锤体检查点成分Bub3和Rae1在衰老调节中的新功能。Bub3和Rae1单倍体不足的小鼠寿命较短,这与衰老相关特征的早期出现有关。由Bub3和Rae1缺乏引起的早衰表型与细胞衰老程序的过早激活密切相关,但与凋亡程序无关。因此,早衰而非肿瘤转化可能是体内纺锤体检查点受损的主要表现。