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在酿酒酵母交配过程中,Prm1定位于接触位点可增强融合。

Prm1 targeting to contact sites enhances fusion during mating in Saccharomyces cerevisiae.

作者信息

Olmo Valerie N, Grote Eric

机构信息

Department of Biochemistry and Molecular Biology, Johns Hopkins University Bloomberg School of Public Health, Baltimore, MD 21144, USA.

出版信息

Eukaryot Cell. 2010 Oct;9(10):1538-48. doi: 10.1128/EC.00116-10. Epub 2010 Aug 20.

Abstract

Prm1 is a pheromone-regulated membrane glycoprotein involved in the plasma membrane fusion event of Saccharomyces cerevisiae mating. Although this function suggests that Prm1 should act at contact sites in pairs of mating yeast cells where plasma membrane fusion occurs, only a small percentage of the total Prm1 was actually detected on the plasma membrane. We therefore investigated the intracellular transport of Prm1 and how this transport contributes to cell fusion. Two Prm1 chimeras that were sorted away from the contact site had reduced fusion activity, indicating that Prm1 indeed functions at contact sites. However, most Prm1 is located in endosomes and other cytoplasmic organelles and is targeted to vacuoles for degradation. Mutations in a putative endocytosis signal in a cytoplasmic loop partially stabilized the Prm1 protein and caused it to accumulate on the plasma membrane, but this endocytosis mutant actually had reduced mating activity. When Prm1 was expressed from a galactose-regulated promoter and its synthesis was repressed at the start of mating, vanishingly small amounts of Prm1 protein remained at the time when the plasma membranes came into contact. Nevertheless, this stable pool of Prm1 was retained at polarized sites on the plasma membrane and was sufficient to promote plasma membrane fusion. Thus, the amount of Prm1 expressed in mating yeast is far in excess of the amount required to facilitate fusion.

摘要

Prm1是一种受信息素调节的膜糖蛋白,参与酿酒酵母交配过程中的质膜融合事件。尽管这一功能表明Prm1应该在发生质膜融合的交配酵母细胞对的接触位点起作用,但实际上在质膜上仅检测到总Prm1的一小部分。因此,我们研究了Prm1的细胞内运输以及这种运输如何促进细胞融合。两个从接触位点分选出去的Prm1嵌合体的融合活性降低,这表明Prm1确实在接触位点起作用。然而,大多数Prm1位于内体和其他细胞质细胞器中,并被靶向液泡进行降解。细胞质环中一个假定的内吞信号的突变部分稳定了Prm1蛋白,并使其在质膜上积累,但这种内吞突变体实际上交配活性降低。当Prm1从半乳糖调节启动子表达且其合成在交配开始时受到抑制时,在质膜接触时仅剩下极少数量的Prm1蛋白。然而,这一稳定的Prm1池保留在质膜的极化位点,并足以促进质膜融合。因此,交配酵母中表达的Prm1量远远超过促进融合所需的量。

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