Dual mechanisms prevent premature chromosome segregation during meiosis.
نویسندگان
چکیده
In meiosis I, homologous chromosomes pair and then attach to the spindle so that the homologs can be pulled apart at anaphase I. The segregation of homologs before pairing would be catastrophic. We describe two mechanisms that prevent this. First, in early meiosis, Ipl1, the budding yeast homolog of the mammalian Aurora B kinase, triggers shedding of a kinetochore protein, preventing microtubule attachment. Second, Ipl1 localizes to the spindle pole bodies (SPBs), where it blocks spindle assembly. These processes are reversed upon expression of Ndt80. Previous studies have shown that Ndt80 is expressed when homologs have successfully partnered, and this triggers a rise in the levels of cyclin-dependent kinase (CDK). We found that CDK phosphorylates Ipl1, delocalizing it from SPBs, triggering spindle assembly. At the same time, kinetochores reassemble. Thus, dual mechanisms controlled by Ipl1 and Ntd80 coordinate chromosome and spindle behaviors to prevent the attachment of unpartnered chromosomes to the meiotic spindle.
منابع مشابه
The Aurora B Kinase AIR-2 Regulates Kinetochores during Mitosis and Is Required for Separation of Homologous Chromosomes during Meiosis
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متن کاملAngelika Amon
Angelika Amon obtained her PhD in 1994 from the University of Vienna for her work on the molecular mechanisms governing cell cycle progression in budding yeast. She then joined the laboratory of Dr. Ruth Lehmann at the Whitehead Institute to investigate germ cell formation in Drosophila. In 1996 Angelika accepted a Whitehead Fellow position to study the mechanisms governing chromosome segregati...
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ورودعنوان ژورنال:
- Genes & development
دوره 27 19 شماره
صفحات -
تاریخ انتشار 2013