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Inhibitory phosphorylation of cyclin-dependent kinase 1 as a compensatory mechanism for mitosis exit
Jeremy P H Chow1, Randy Y C Poon, Hoi Tang Ma
1Division of Life Science, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong.
Abstract:
The current paradigm states that exit from mitosis is triggered by the ubiquitin ligase anaphase-promoting complex/cyclosome (APC/C) acting in concert with an activator called CDC20. While this has been well established for a number of systems, the evidence of a critical role of CDC20 in somatic cells is not unequivocal. In this study, we reexamined whether mitotic exit can occur properly after CDC20 is depleted. Using single-cell analysis, we found that CDC20 depletion with small interfering RNAs (siRNAs) significantly impaired the degradation of APC/C substrates and delayed mitotic exit in various cancer cell lines. The recruitment of cyclin B1 to the core APC/C was defective after CDC20 downregulation. Nevertheless, CDC20-depleted cells were still able to complete mitosis, albeit requiring twice the normal time. Intriguingly, a high level of cyclin-dependent kinase 1 (CDK1)-inhibitory phosphorylation was induced during mitotic exit in CDC20-depleted cells. The expression of an siRNA-resistant CDC20 rescued both the mitotic exit delay and the CDK1-inhibitory phosphorylation. Moreover, the expression of a nonphosphorylatable CDK1 mutant or the downregulation of WEE1 and MYT1 abolished mitotic exit in CDC20-depleted cells. These findings indicate that, in the absence of sufficient APC/C activity, an alternative mechanism that utilized the classic inhibitory phosphorylation of CDK1 could mediate mitotic exit.
Insights
Mitotic exit typically requires CDC20, but this study shows cancer cells can still exit mitosis without it. An alternative pathway involving CDK1 phosphorylation compensates for CDC20 depletion.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- The anaphase-promoting complex/cyclosome (APC/C) with its activator CDC20 is considered essential for mitotic exit.
- The precise role of CDC20 in somatic cell mitosis remains under investigation.
Purpose of the Study:
- To investigate the necessity of CDC20 for proper mitotic exit in cancer cells.
- To elucidate alternative mechanisms of mitotic exit in the absence of CDC20.
Main Methods:
- Depletion of CDC20 using small interfering RNAs (siRNAs) in various cancer cell lines.
- Single-cell analysis to assess APC/C substrate degradation and mitotic timing.
- Investigation of cyclin B1 recruitment, CDK1 phosphorylation, and expression of siRNA-resistant CDC20 or CDK1 mutants.
Main Results:
- CDC20 depletion significantly delayed mitotic exit and impaired APC/C substrate degradation, including cyclin B1.
- Cells depleted of CDC20 completed mitosis with prolonged duration, accompanied by increased CDK1-inhibitory phosphorylation.
- Restoration of CDC20 or inhibition of CDK1-inhibitory pathways (WEE1/MYT1) affected mitotic exit.
Conclusions:
- Mitotic exit can occur in cancer cells even with significantly reduced CDC20 levels.
- An alternative mechanism involving CDK1 inhibitory phosphorylation can mediate mitotic exit when APC/C activity is compromised.
- These findings reveal a compensatory pathway for mitotic exit, offering potential therapeutic targets in cancer.
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