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Reference - PMID:11882285 - Requirement of chromatid cohesion proteins rad21/scc1 and mis4/scc2 for normal spindle-kinetochore interaction in fission yeast.

Reference summary

PubMed ID
PMID:11882285
Title
Requirement of chromatid cohesion proteins rad21/scc1 and mis4/scc2 for normal spindle-kinetochore interaction in fission yeast.
Authors
Toyoda Y, Furuya K, Goshima G, Nagao K, Takahashi K, Yanagida M
Citation
Curr Biol 2002 Mar 05;12(5):347-58
Publication year
2002
Abstract
Proteins conserved from yeast to human hold two sister chromatids together. The failure to form cohesion in the S phase results in premature separation of chromatids in G2/M. Mitotic kinetochores free from microtubules or the lack of tension are known to activate spindle checkpoint. The loss of chromatid cohesion in fission yeast mutants (mis4-242 and rad21-K1) leads to the activation of Mad2- and Bub1-dependent checkpoint, possibly due to a diminished microtubule-kinetochore interaction. Bub1, a checkpoint kinase, localizes briefly at early mitotic kinetochores in wild-type, whereas the cohesion mutation greatly increases the duration of kinetochore localization. Bub1 is bound to the central centromere region of mitotic cells. These cohesion mutants are hypersensitive to a tubulin poison and are synthetic lethal with dis1 and bir1/cut17, which are defective in microtubule-kinetochore interaction. The formation of specialized centromere chromatin containing CENP-A does not require cohesion. Dominant-negative noncleavable Rad21 fails to activate checkpoint but blocks sister chromatid separation and full spindle elongation in anaphase. Mis4 and Rad21 (budding yeast Scc2 and Scc1 homologs, respectively) act in establishing the normal spindle-kinetochore interaction in early mitosis and inhibit sister chromatid separation until the cleavage of Rad21 in anaphase. Checkpoint directly or indirectly monitors the states of cohesion in early mitosis. Full spindle extension occurs with unequal nuclear division in cohesion mutants in the absence of Mad2.

Annotation

GO biological process

GO:0000070 - mitotic sister chromatid segregation

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GO cellular component

GO:0000776 - kinetochore

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Multi-locus phenotype

FYPO:0004308 - abnormal CENP-A containing chromatin organization

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Genotypes:

FYPO:0005342 - normal rate of mitotic spindle elongation during anaphase B

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FYPO:0003241 - unequal mitotic sister chromatid segregation

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Single locus phenotype

FYPO:0000620 - abnormal cell cycle arrest in mitotic metaphase

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FYPO:0004308 - abnormal CENP-A containing chromatin organization

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FYPO:0000337 - abnormal mitosis

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FYPO:0006174 - abolished mitotic spindle elongation during anaphase B

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FYPO:0002797 - decreased protein degradation

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FYPO:0000639 - delayed onset of septum assembly

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FYPO:0002638 - increased activation of mitotic spindle assembly checkpoint

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FYPO:0000274 - increased duration of mitotic M phase

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FYPO:0003307 - increased mitotic index

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FYPO:0005735 - increased protein localization to kinetochore during mitotic M phase

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FYPO:0004307 - long mitotic spindle during metaphase

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FYPO:0004310 - normal duration of mitotic M phase

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FYPO:0001532 - normal duration of mitotic S phase

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FYPO:0005779 - normal protein localization to kinetochore during mitosis

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FYPO:0000091 - sensitive to thiabendazole

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