PomBase home

Reference - PMID:26124291 - A stable microtubule array drives fission yeast polarity reestablishment upon quiescence exit.

Reference summary

PubMed ID
PMID:26124291
Title
A stable microtubule array drives fission yeast polarity reestablishment upon quiescence exit.
Authors
Laporte D, Courtout F, Pinson B, Dompierre J, Salin B, Brocard L, Sagot I
Citation
J Cell Biol 2015 Jul 06;210(1):99-113
Publication year
2015
Abstract
Cells perpetually face the decision to proliferate or to stay quiescent. Here we show that upon quiescence establishment, Schizosaccharomyces pombe cells drastically rearrange both their actin and microtubule (MT) cytoskeletons and lose their polarity. Indeed, while polarity markers are lost from cell extremities, actin patches and cables are reorganized into actin bodies, which are stable actin filament-containing structures. Astonishingly, MTs are also stabilized and rearranged into a novel antiparallel bundle associated with the spindle pole body, named Q-MT bundle. We have identified proteins involved in this process and propose a molecular model for Q-MT bundle formation. Finally and importantly, we reveal that Q-MT bundle elongation is involved in polarity reestablishment upon quiescence exit and thereby the efficient return to the proliferative state. Our work demonstrates that quiescent S. pombe cells assemble specific cytoskeleton structures that improve the swiftness of the transition back to proliferation.

Annotation

GO cellular component

GO:0099079 - actin body

Genes:

GO:0099070 - static microtubule bundle

Genes:

Single locus phenotype

FYPO:0005565 - abnormal microtubule bundle during G0 to G1 transition

Genes:

Genotypes:

FYPO:0004614 - abnormal microtubule polymerization during vegetative growth

Genes:

Genotypes:

FYPO:0005613 - normal protein localization to nuclear envelope during G0 to G1 transition

Genes:

Genotypes:

FYPO:0005567 - T-shaped cell during G0 to G1 transition

Genes:

Genotypes: