Pinsky Benjamin A, Biggins Sue
Fred Hutchinson Cancer Research Center, Division of Basic Sciences, 1100 Fairview Ave N., PO Box 19024, Seattle, WA 98109, USA.
Trends Cell Biol. 2005 Sep;15(9):486-93. doi: 10.1016/j.tcb.2005.07.005.
The spindle checkpoint ensures the fidelity of chromosome segregation by preventing cell-cycle progression until all the chromosomes make proper bipolar attachments to the mitotic spindle and come under tension. Despite significant advances in our understanding of spindle checkpoint function, the primary signal that activates the spindle checkpoint remains unclear. Whereas some experiments indicate that the checkpoint recognizes the lack of microtubule attachment to the kinetochore, others indicate that the checkpoint senses the absence of tension generated on the kinetochore by microtubules. The interdependence between tension and microtubule attachment make it difficult to determine whether these signals are separable. In this article (which is part of the Chromosome Segregation and Aneuploidy series), we consider recent evidence that supports and opposes the hypothesis that defects in tension act as the primary checkpoint signal.
纺锤体检查点通过阻止细胞周期进程,确保染色体分离的准确性,直到所有染色体与有丝分裂纺锤体形成正确的双极附着并受到张力作用。尽管我们对纺锤体检查点功能的理解取得了重大进展,但激活纺锤体检查点的主要信号仍不清楚。一些实验表明,该检查点识别动粒与微管未附着的情况,而另一些实验则表明,该检查点感知微管在动粒上产生的张力缺失。张力与微管附着之间的相互依存关系使得难以确定这些信号是否可分离。在本文(这是《染色体分离与非整倍体》系列文章的一部分)中,我们考虑了最近支持和反对张力缺陷作为主要检查点信号这一假说的证据。