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Reports

CDK1 inhibitors antagonize the immediate apoptosis triggered by spindle disruption but promote apoptosis following the subsequent rereplication and abnormal mitosis

Ying Wai Chan, Hoi Tang Ma, Winnie Wong, Chui Chui Ho, Kin Fan On and Randy Y.C. Poon

volume 7 | issue 10

15 May 2008
Pages: 1449 - 1461

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Spindle-disrupting agents and CDK inhibitors are important cancer therapeutic agents. Spindle toxins activate the spindle-assembly checkpoint and lead to sustained activation of CDK1. Different published results indicate that CDK1 activity is either important or dispensable for the cytotoxicity associated with spindle disruption. Using live cell imaging and various approaches that uncoupled mitotic events, we show that apoptosis was induced by both prolonged nocodazole treatment as well as by inhibition of CDK1 activity after a transient nocodazole block. However, distinct mechanisms are involved in the two types of cell death. The massive apoptosis triggered by nocodazole treatment requires the continue activation of cyclin B1-CDK1 and is antagonized by premature mitotic slippage. By contrast, apoptosis induced by nocodazole followed by CDK inhibitors occurred after rereplication and multipolar mitosis of the subsequent cell cycle. The presence of dual mechanisms of cytotoxicity mediated by spindle disruption and CDK inhibition may reconcile the various apparent inconsistent published results. These data underscore the essential role of cyclin B1-CDK1 as the basis of apoptosis during mitotic arrest, and the role of mitotic slippage and abnormal mitosis for apoptosis at later stages.

Authors

Ying Wai Chan

Hong Kong University of Science and Technology; Hong Kong

Hoi Tang Ma

Hong Kong University of Science and Technology; Hong Kong

Winnie Wong

Hong Kong University of Science and Technology; Hong Kong

Chui Chui Ho

Hong Kong University of Science and Technology; Hong Kong

Kin Fan On

Hong Kong University of Science and Technology; Hong Kong

Randy Y.C. Poon

Hong Kong University of Science and Technology; Hong Kong


Purchase article for $19

Subscribe to this journal for $129/year