RRC ID 18639
著者 Sharifmoghadam MR, Curto MÁ, Hoya M, de León N, Martin-Garcia R, Doncel C, Valdivieso MH.
タイトル The integrity of the cytokinesis machinery under stress conditions requires the glucan synthase Bgs1p and its regulator Cfh3p.
ジャーナル PLoS One
Abstract In yeast, cytokinesis requires coordination between nuclear division, acto-myosin ring contraction, and septum synthesis. We studied the role of the Schizosaccharomyces pombe Bgs1p and Cfh3p proteins during cytokinesis under stress conditions. Cfh3p formed a ring in the septal area that contracted during mitosis; Cfh3p colocalized and co-immunoprecipitated with Cdc15p, showing that Cfh3p interacted with the contractile acto-myosin ring. In a wild-type strain, a significant number of contractile rings collapsed under stress conditions and this number increased dramatically in the cfh3Δ, bgs1cps1-191, and cfh3Δ bgs1/cps1-191. Our results show that after osmotic shock Cfh3p is essential for the stability of the (1,3) glucan synthase Bgs1p in the septal area, but not at the cell poles. Finally, cells adapted to stress; they repaired their contractile rings and re-localized Bgs1p to the cell surface some time after osmotic shock. A detailed analysis of the cytokinesis machinery in the presence of KCl revealed that the actomyosin ring collapsed before Bgs1p was internalized, and that it was repaired before Bgs1p re-localized to the cell surface. In the cfh3Δ, bgs1/cps1-191, and cfh3Δ bgs1/cps1-191 mutants, which have reduced glucan synthesis, the damage produced to the ring had stronger consequences, suggesting that an intact primary septum contributes to ring stability. The results show that the contractile actomyosin ring is very sensitive to stress, and that cells have efficient mechanisms to remedy the damage produced in this structure.
巻・号 7(8)
ページ e42726
公開日 2012-1-1
DOI 10.1371/journal.pone.0042726
PII PONE-D-12-09689
PMID 22905165
PMC PMC3419747
MeSH Actins / metabolism Cell Division Cytokinesis / physiology* Cytoskeletal Proteins / metabolism Gene Expression Regulation, Fungal* Glucosyltransferases / genetics* Green Fluorescent Proteins / metabolism Models, Genetic Mutation Osmosis Phenotype Schizosaccharomyces / genetics* Schizosaccharomyces / metabolism* Schizosaccharomyces pombe Proteins / genetics Schizosaccharomyces pombe Proteins / metabolism Schizosaccharomyces pombe Proteins / physiology* Temperature Time Factors
IF 2.74
引用数 3
WOS 分野 CELL BIOLOGY
リソース情報
酵母 pREP-3X