Inhibitory factors associated with anaphase-promoting complex/cylosome in mitotic checkpoint
- 20 March 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (12) , 4870-4875
- https://doi.org/10.1073/pnas.0700523104
Abstract
The mitotic (or spindle assembly) checkpoint system ensures accurate chromosome segregation by preventing anaphase initiation until all chromosomes are correctly attached to the mitotic spindle. It affects the activity of the anaphase-promoting complex/cyclosome (APC/C), a ubiquitin ligase that targets inhibitors of anaphase initiation for degradation. The mechanisms by which this system regulates APC/C remain obscure. Some models propose that the system promotes sequestration of the APC/C activator Cdc20 by binding to the checkpoint proteins Mad2 and BubR1. A different model suggests that a mitotic checkpoint complex (MCC) composed of BubR1, Bub3, Cdc20, and Mad2 inhibits APC/C in mitotic checkpoint [Sudakin V, Chan GKT, Yen TJ (2001) J Cell Biol 154:925-936]. We examined this problem by using extracts from nocodazole-arrested cells that reproduce some downstream events of the mitotic checkpoint system, such as lag kinetics of the degradation of APC/C substrate. Incubation of extracts with adenosine-5'-(gamma-thio)triphosphate (ATP[gammaS]) stabilized the checkpoint-arrested state, apparently by stable thiophosphorylation of some proteins. By immunoprecipitation of APC/C from stably checkpoint-arrested extracts, followed by elution with increased salt concentration, we isolated inhibitory factors associated with APC/C. A part of the inhibitory material consists of Cdc20 associated with BubR1 and Mad2, and is thus similar to MCC. Contrary to the original MCC hypothesis, we find that MCC disassembles upon exit from the mitotic checkpoint. Thus, the requirement of the mitotic checkpoint system for the binding of Mad2 and BubR1 to Cdc20 may be for the assembly of the inhibitory complex rather than for Cdc20 sequestration.Keywords
This publication has 68 references indexed in Scilit:
- Galactinol and Raffinose Constitute a Novel Function to Protect Plants from Oxidative DamagePlant Physiology, 2008
- Quality control for plant metabolomics: reporting MSI‐compliant studiesThe Plant Journal, 2008
- Phloem loading in Verbascum phoeniceum L. depends on the synthesis of raffinose-family oligosaccharidesProceedings of the National Academy of Sciences, 2007
- Clustal W and Clustal X version 2.0Bioinformatics, 2007
- Iron Deficiency-Induced Secretion of Phenolics Facilitates the Reutilization of Root Apoplastic Iron in Red CloverPlant Physiology, 2007
- The Mad1/Mad2 Complex as a Template for Mad2 Activation in the Spindle Assembly CheckpointCurrent Biology, 2005
- Crystal structure of the tetrameric Mad1-Mad2 core complex: implications of a 'safety belt' binding mechanism for the spindle checkpointThe EMBO Journal, 2002
- Phosphorylation of Cdc20/Fizzy Negatively Regulates the Mammalian Cyclosome/APC in the Mitotic CheckpointBiochemical and Biophysical Research Communications, 2000
- Phosphorylation of the Cyclosome Is Required for Its Stimulation by Fizzy/cdc20Biochemical and Biophysical Research Communications, 1999
- Cell signalling by oligosaccharidesTrends in Plant Science, 1997