Published in

Rockefeller University Press, Journal of Cell Biology, 3(187), p. 399-412, 2009

DOI: 10.1083/jcb.200902093

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Ase1/Prc1-dependent spindle elongation corrects merotely during anaphase in fission yeast

Journal article published in 2009 by Thibault Courtheoux, Guillaume Gay ORCID, Yannick Gachet, Sylvie Tournier
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

Faithful segregation of sister chromatids requires the attachment of each kinetochore (Kt) to microtubules (MTs) that extend from opposite spindle poles. Merotelic Kt orientation is a Kt–MT misattachment in which a single Kt binds MTs from both spindle poles rather than just one. Genetic induction of merotelic Kt attachment during anaphase in fission yeast resulted in intra-Kt stretching followed by either correction or Kt disruption. Laser ablation of spindle MTs revealed that intra-Kt stretching and merotelic correction were dependent on MT forces. The presence of multiple merotelic chromosomes linearly antagonized the spindle elongation rate, and this phenomenon could be solved numerically using a simple force balance model. Based on the predictions of our mechanical model, we provide in vivo evidence that correction of merotelic attachment in anaphase is tension dependent and requires an Ase1/Prc1-dependent mechanism that prevents spindle collapse and thus asymmetric division and/or the appearance of the cut phenotype.