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Reference - PMID:24239120 - Antagonistic spindle motors and MAPs regulate metaphase spindle length and chromosome segregation.

Reference summary

PubMed ID
PMID:24239120
Title
Antagonistic spindle motors and MAPs regulate metaphase spindle length and chromosome segregation.
Authors
Syrovatkina V, Fu C, Tran PT
Citation
Curr Biol 2013 Dec 02;23(23):2423-9
Publication year
2013
Abstract
Metaphase describes a phase of mitosis where chromosomes are attached and oriented on the bipolar spindle for subsequent segregation at anaphase. In diverse cell types, the metaphase spindle is maintained at characteristic constant length [1-3]. Metaphase spindle length is proposed to be regulated by a balance of pushing and pulling forces generated by distinct sets of spindle microtubules (MTs) and their interactions with motors and MT-associated proteins (MAPs). Spindle length is further proposed to be important for chromosome segregation fidelity, as cells with shorter- or longer-than-normal metaphase spindles, generated through deletion or inhibition of individual mitotic motors or MAPs, showed chromosome segregation defects. To test the force-balance model of spindle length control and its effect on chromosome segregation, we applied fast microfluidic temperature control with live-cell imaging to monitor the effect of deleting or switching off different combinations of antagonistic force contributors in the fission yeast metaphase spindle. We show that the spindle midzone proteins kinesin-5 cut7p and MT bundler ase1p contribute to outward-pushing forces and that the spindle kinetochore proteins kinesin-8 klp5/6p and dam1p contribute to inward-pulling forces. Removing these proteins individually led to aberrant metaphase spindle length and chromosome segregation defects. Removing these proteins in antagonistic combination rescued the defective spindle length and in some combinations also partially rescued chromosome segregation defects.

Annotation

GO biological process

GO:0061804 - mitotic spindle formation (spindle phase one)

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Multi-locus phenotype

FYPO:0004101 - lagging mitotic chromosomes, with complete sister chromatid separation

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FYPO:0004307 - long mitotic spindle during metaphase

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FYPO:0006259 - normal mitotic spindle length during metaphase

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FYPO:0006917 - normal onset of mitotic metaphase/anaphase transition

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FYPO:0007961 - transient abrupt spindle length decrease at anaphase onset

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Single locus phenotype

FYPO:0001270 - complete but unequal mitotic sister chromatid segregation

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FYPO:0007960 - decreased rate of mitotic spindle elongation during prophase

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FYPO:0007959 - increased rate of mitotic spindle elongation during prophase

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FYPO:0004101 - lagging mitotic chromosomes, with complete sister chromatid separation

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FYPO:0004307 - long mitotic spindle during metaphase

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FYPO:0000324 - mitotic metaphase/anaphase transition delay

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FYPO:0006259 - normal mitotic spindle length during metaphase

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FYPO:0004395 - short bipolar mitotic spindle during metaphase

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