Reduced Mad2 expression keeps relaxed kinetochores from arresting budding yeast in mitosis

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Reduced Mad2 expression keeps relaxed kinetochores from arresting budding yeast in mitosis

Chromosome segregation depends on the spindle checkpoint, which delays anaphase until all chromosomes have bound microtubules and have been placed under tension. The Mad1-Mad2 complex is an essential component of the checkpoint. We studied the consequences of removing one copy of MAD2 in diploid cells of the budding yeast, Saccharomyces cerevisiae. Compared to MAD2/MAD2 cells, MAD2/mad2Δ hetero...

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Mad2 and Mad3 Cooperate to Arrest Budding Yeast in Mitosis

BACKGROUND The spindle checkpoint ensures accurate chromosome transmission by delaying chromosome segregation until all chromosomes are correctly aligned on the mitotic spindle. The checkpoint is activated by kinetochores that are not attached to microtubules or are attached but not under tension and arrests cells at metaphase by inhibiting the anaphase-promoting complex (APC) and its coactivat...

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The activity of the cyclin-dependent kinase 1 (Cdk1), Cdc28, inhibits the transition from anaphase to G1 in budding yeast. CDC28-T18V, Y19F (CDC28-VF), a mutant that lacks inhibitory phosphorylation sites, delays the exit from mitosis and is hypersensitive to perturbations that arrest cells in mitosis. Surprisingly, this behavior is not due to a lack of inhibitory phosphorylation or increased k...

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Mad2 binding by phosphorylated kinetochores links error detection and checkpoint action in mitosis

The spindle checkpoint must detect the presence of unattached or improperly attached kinetochores and must then inhibit progression through the cell cycle until the offending condition is resolved. Detection probably involves attachment-sensitive kinetochore phosphorylation (reviewed in [1,2]). A key player in the checkpoint's response is the Mad2 protein, which prevents activation of the anaph...

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ژورنال

عنوان ژورنال: Molecular Biology of the Cell

سال: 2011

ISSN: 1059-1524,1939-4586

DOI: 10.1091/mbc.e09-01-0029