Shannon Katie B, Canman Julie C, Salmon E D
SPIRE fellow, Department of Biology, University of North Carolina, Chapel Hill, North Carolina 27599-3280, USA.
Mol Biol Cell. 2002 Oct;13(10):3706-19. doi: 10.1091/mbc.e02-03-0137.
The spindle checkpoint monitors microtubule attachment and tension at kinetochores to ensure proper chromosome segregation. Previously, PtK1 cells in hypothermic conditions (23 degrees C) were shown to have a pronounced mitotic delay, despite having normal numbers of kinetochore microtubules. At 23 degrees C, we found that PtK1 cells remained in metaphase for an average of 101 min, compared with 21 min for cells at 37 degrees C. The metaphase delay at 23 degrees C was abrogated by injection of Mad2 inhibitors, showing that Mad2 and the spindle checkpoint were responsible for the prolonged metaphase. Live cell imaging showed that kinetochore Mad2 became undetectable soon after chromosome congression. Measurements of the stretch between sister kinetochores at metaphase found a 24% decrease in tension at 23 degrees C, and metaphase kinetochores at 23 degrees C exhibited higher levels of 3F3/2, Bub1, and BubR1 compared with 37 degrees C. Microinjection of anti-BubR1 antibody abolished the metaphase delay at 23 degrees C, indicating that the higher kinetochore levels of BubR1 may contribute to the delay. Disrupting both Mad2 and BubR1 function induced anaphase with the same timing as single inhibitions, suggesting that these checkpoint genes function in the same pathway. We conclude that reduced tension at kinetochores with a full complement of kinetochore microtubules induces a checkpoint dependent metaphase delay associated with elevated amounts of kinetochore 3F3/2, Bub1, and BubR1 labeling.
纺锤体检查点监测着丝粒处的微管附着和张力,以确保染色体正确分离。此前研究表明,处于低温条件(23摄氏度)下的PtK1细胞尽管着丝粒微管数量正常,但仍有明显的有丝分裂延迟。在23摄氏度时,我们发现PtK1细胞平均在中期停留101分钟,而在37摄氏度时细胞平均停留21分钟。注射Mad2抑制剂可消除23摄氏度下的中期延迟,表明Mad2和纺锤体检查点导致了中期延长。活细胞成像显示染色体排列后不久,着丝粒Mad2就检测不到了。对中期姐妹着丝粒间拉伸的测量发现,在23摄氏度时张力降低了24%,与37摄氏度相比,23摄氏度下的中期着丝粒显示出更高水平的3F3/2、Bub1和BubR1。显微注射抗BubR1抗体消除了23摄氏度下的中期延迟,表明着丝粒处较高水平的BubR1可能导致了延迟。同时破坏Mad2和BubR1的功能诱导的后期与单一抑制时的时间相同,这表明这些检查点基因在同一途径中发挥作用。我们得出结论,在着丝粒微管完整的情况下,着丝粒处张力降低会诱导与着丝粒3F3/2、Bub1和BubR1标记量增加相关的检查点依赖性中期延迟。