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小鼠Bub1的动粒定位对于正常的有丝分裂时间安排和对纺锤体损伤的检查点反应是必需的。

Kinetochore localization of murine Bub1 is required for normal mitotic timing and checkpoint response to spindle damage.

作者信息

Taylor S S, McKeon F

机构信息

Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Cell. 1997 May 30;89(5):727-35. doi: 10.1016/s0092-8674(00)80255-x.

Abstract

The mitotic checkpoint ensures proper chromosome segregation by delaying anaphase until chromosomes are aligned on the spindle. Following prolonged spindle damage, however, cells eventually exit mitosis and undergo apoptosis. We show here that a murine homolog of the yeast mitotic checkpoint gene BUB1 localizes to the kinetochore during mitosis. By expressing a dominant-negative mutant, we show that mBub1 is not only required for the checkpoint response to spindle damage, but acts in the timing of a normal mitosis. In addition, when mBub1 function is compromised, cells escape apoptosis and continue cell cycle progression, despite leaving mitosis with a disrupted spindle. These data demonstrate a role for kinetochore-associated mBub1 in regulating exit from mitosis, and suggest functional links between the mitotic checkpoint and subsequent apoptotic events in G1.

摘要

有丝分裂检查点通过延迟后期直到染色体在纺锤体上排列整齐来确保正确的染色体分离。然而,在长时间的纺锤体损伤后,细胞最终会退出有丝分裂并发生凋亡。我们在此表明,酵母有丝分裂检查点基因BUB1的小鼠同源物在有丝分裂期间定位于动粒。通过表达显性负性突变体,我们表明mBub1不仅是对纺锤体损伤的检查点反应所必需的,而且在正常有丝分裂的时间调控中起作用。此外,当mBub1功能受损时,细胞逃避凋亡并继续细胞周期进程,尽管在纺锤体受损的情况下离开有丝分裂。这些数据证明了动粒相关的mBub1在调节有丝分裂退出中的作用,并暗示了有丝分裂检查点与随后G1期凋亡事件之间的功能联系。

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