首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Prm1p a Pheromone-Regulated Multispanning Membrane Protein Facilitates Plasma Membrane Fusion during Yeast Mating
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Prm1p a Pheromone-Regulated Multispanning Membrane Protein Facilitates Plasma Membrane Fusion during Yeast Mating

机译:Prm1p一种由信息素调控的跨膜蛋白在酵母交配过程中促进血浆膜融合

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摘要

Cell fusion occurs throughout development, from fertilization to organogenesis. The molecular mechanisms driving plasma membrane fusion in these processes remain unknown. While yeast mating offers an excellent model system in which to study cell fusion, all genes previously shown to regulate the process act at or before cell wall breakdown; i.e., well before the two plasma membranes have come in contact. Using a new strategy in which genomic data is used to predict which genes may possess a given function, we identified PRM1, a gene that is selectively expressed during mating and that encodes a multispanning transmembrane protein. Prm1p localizes to sites of cell–cell contact where fusion occurs. In matings between Δprm1 mutants, a large fraction of cells initiate zygote formation and degrade the cell wall separating mating partners but then fail to fuse. Electron microscopic analysis reveals that the two plasma membranes in these mating pairs are tightly apposed, remaining separated only by a uniform gap of ∼8 nm. Thus, the phenotype of Δprm1 mutants defines a new step in the mating reaction in which membranes are juxtaposed, possibly through a defined adherence junction, yet remain unfused. This phenotype suggests a role for Prm1p in plasma membrane fusion.
机译:细胞融合发生在从受精到器官发生的整个发育过程中。在这些过程中驱动质膜融合的分子机制仍然未知。尽管酵母交配提供了一个出色的模型系统来研究细胞融合,但先前显示的所有调控该过程的基因都在细胞壁破裂时或之前起作用。即在两个质膜接触之前。使用一种新的策略,其中使用基因组数据来预测哪些基因可能具有给定的功能,我们鉴定了PRM1,这是一种在交配过程中选择性表达的基因,它编码跨膜蛋白。 Prm1p定位于发生融合的细胞间接触部位。在Δprm1突变体之间的交配中,大部分细胞会启动合子形成并降解分离交配伴侣的细胞壁,但随后无法融合。电子显微镜分析显示,这些配对对中的两个质膜紧密并置,仅以约8 nm的均匀间隙保持分开。因此,Δprm1突变体的表型定义了交配反应的新步骤,其中膜可能通过定义的粘附连接点并置,但仍未融合。该表型表明Prm1p在质膜融合中的作用。

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