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Cell surface polarization during yeast mating

机译:酵母交配过程中细胞表面极化

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摘要

Exposure to mating pheromone in haploid Saccharomyces cerevi-siae cells results in the arrest of the cell cycle, expression of mating-specific genes, and polarized growth toward the mating partner. Proteins involved in signaling, polarization, cell adhesion, and fusion are localized to the tip of the mating cell (shmoo) where fusion will eventually occur. The mechanisms ensuring the correct targeting and retention of these proteins are poorly understood. Here we show that in pheromone-treated cells, a reorganization of the plasma membrane involving lipid rafts results in the retention of proteins at the tip of the mating projection, segregated from the rest of the membrane. Sphingolipid and ergosterol biosynthetic mutants fail to polarize proteins to the tip of the shmoo and are deficient in mating. Our results show that membrane microdomain clustering at the mating projection is involved in the generation and maintenance of polarity during mating.
机译:暴露于单倍体酿酒酵母细胞中的交配信息素会导致细胞周期停滞,交配特异性基因的表达以及向交配伴侣的极化生长。涉及信号传导,极化,细胞粘附和融合的蛋白质位于最终会发生融合的交配细胞末端(shmoo)。确保正确靶向和保留这些蛋白质的机制了解甚少。在这里,我们显示在信息素处理过的细胞中,涉及脂质筏的质膜的重组导致蛋白质保留在交配突起的尖端,与膜的其余部分隔离。鞘脂和麦角固醇的生物合成突变体不能使蛋白质极化至shmoo的尖端,并且缺乏交配。我们的结果表明,在交配突起处的膜微区簇参与交配过程中极性的产生和维持。

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