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Reference - PMID:35293864 - Microtubule rescue at midzone edges promotes overlap stability and prevents spindle collapse during anaphase B.

Reference summary

PubMed ID
PMID:35293864
Title
Microtubule rescue at midzone edges promotes overlap stability and prevents spindle collapse during anaphase B.
Authors
Lera-Ramirez M, Nédélec FJ, Tran PT
Citation
Elife 2022 Mar 16;11
Publication year
2022
Abstract
During anaphase B, molecular motors slide interpolar microtubules to elongate the mitotic spindle, contributing to the separation of chromosomes. However, sliding of antiparallel microtubules reduces their overlap, which may lead to spindle breakage, unless microtubules grow to compensate sliding. How sliding and growth are coordinated is still poorly understood. In this study, we have used the fission yeast S. pombe to measure microtubule dynamics during anaphase B. We report that the coordination of microtubule growth and sliding relies on promoting rescues at the midzone edges. This makes microtubules stable from pole to midzone, while their distal parts including the plus ends alternate between assembly and disassembly. Consequently, the midzone keeps a constant length throughout anaphase, enabling sustained sliding without the need for a precise regulation of microtubule growth speed. Additionally, we found that in S. pombe , which undergoes closed mitosis, microtubule growth speed decreases when the nuclear membrane wraps around the spindle midzone.

Annotation

Multi-locus phenotype

FYPO:0007976 - increased duration of interpolar microtubule growth events during anaphase B

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Single locus phenotype

FYPO:0007975 - abnormal distribution of interpolar microtubule rescue during anaphase B

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FYPO:0007972 - decreased rate of interpolar microtubule polymerization during mitotic anaphase B

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FYPO:0007971 - increased rate of interpolar microtubule polymerization during mitotic anaphase B

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FYPO:0007974 - increased rate of interpolar microtubule polymerization inside the mitotic nuclear membrane bridge

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FYPO:0003481 - viable elongated vegetative cell, elongated upon mitotic entry

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