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Reference - PMID:11509236 - Myosin V-mediated vacuole distribution and fusion in fission yeast.

Reference summary

PubMed ID
PMID:11509236
Title
Myosin V-mediated vacuole distribution and fusion in fission yeast.
Authors
Mulvihill DP, Pollard PJ, Win TZ, Hyams JS
Citation
Curr Biol 2001 Jul 24;11(14):1124-7
Publication year
2001
Abstract
The class V myosins are actin-based motors that move a variety of cellular cargoes [1]. In budding yeast, their activity includes the relocation of a portion of the vacuole from the mother cell to the bud [2, 3]. Fission yeast cells contain numerous (approximately 80) small vacuoles. When S. pombe cells are placed in water, vacuoles fuse in response to osmotic stress [4]. Fission yeast possess two type V myosin genes, myo51(+) and myo52(+) [5]. In a myo51Delta strain, vacuoles were distributed throughout the cell, and mean vacuole diameter was identical to that seen in wild-type cells. When myo51Delta and wild-type cells were placed in water, vacuoles enlarged by fusion. In myo52Delta cells, by contrast, vacuoles were smaller and mostly clustered around the nucleus, and fusion in water was largely inhibited. When cells containing GFP-Myo52 were placed in water, Myo52 was seen to redistribute from the cell poles to the surface of the fusing vacuoles. Vacuole fusion in fission yeast was inhibited by the microtubule drug thiabendazole (TBZ) but not by the actin inhibitor latrunculin B. This is the first demonstration of the involvement of a type V myosin, possibly via an interaction with microtubules, in homotypic membrane fusion.

Annotation

GO biological process

GO:0097576 - vacuole fusion

Genes:

Single locus phenotype

FYPO:0000426 - normal endocytosis

Genes:

Genotypes:

FYPO:0002792 - small vacuoles present in increased numbers during cellular hypotonic response

Genes:

Genotypes: