Elia L, Marsh L
Department of Cell Biology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
J Cell Biol. 1998 Sep 21;142(6):1473-85. doi: 10.1083/jcb.142.6.1473.
Cell fusion during yeast mating provides a model for signaling-controlled changes at the cell surface. We identified the AXL1 gene in a screen for genes required for cell fusion in both mating types during mating. AXL1 is a pheromone-inducible gene required for axial bud site selection in haploid yeast and for proteolytic maturation of a-factor. Two other bud site selection genes, RSR1, encoding a small GTPase, and BUD3, were also required for efficient cell fusion. Based on double mutant analysis, AXL1 in a MATalpha strain acted genetically in the same pathway with FUS2, a fusion-dedicated gene. Electron microscopy of axl1, rsr1, and fus2 prezygotes revealed similar defects in nuclear migration, vesicle accumulation, cell wall degradation, and membrane fusion during cell fusion. The axl1 and rsr1 mutants exhibited defects in pheromone-induced morphogenesis. AXL1 protease function was required in MATalpha strains for fusion during mating. The ability of the Rsr1p GTPase to cycle was required for efficient cell fusion, as it is for bud site selection. During conjugation, vegetative functions may be redeployed under the control of pheromone signaling for mating purposes. Since Rsr1p has been reported to physically associate with Cdc24p and Bem1p components of the pheromone response pathway, we suggest that the bud site selection genes Rsr1p and Axl1p may act to mediate pheromone control of Fus2p-based fusion events during mating.
酵母交配过程中的细胞融合为细胞表面信号控制的变化提供了一个模型。我们在筛选交配过程中两种交配类型细胞融合所需基因时鉴定出了AXL1基因。AXL1是一种信息素诱导基因,单倍体酵母中轴向芽位点选择及α-因子的蛋白水解成熟都需要该基因。另外两个芽位点选择基因,编码小GTP酶的RSR1和BUD3,对于高效细胞融合也是必需的。基于双突变分析,MATα菌株中的AXL1在遗传上与FUS2(一个专门负责融合的基因)处于同一途径。对axl1、rsr1和fus2合子前体的电子显微镜观察揭示了细胞融合过程中核迁移、囊泡积累、细胞壁降解和膜融合方面类似的缺陷。axl1和rsr1突变体在信息素诱导的形态发生方面表现出缺陷。MATα菌株交配时融合需要AXL1蛋白酶功能。Rsr1p GTP酶循环的能力对于高效细胞融合是必需的,就像对芽位点选择一样。在接合过程中,营养功能可能在信息素信号控制下重新部署用于交配目的。由于据报道Rsr1p与信息素反应途径的Cdc24p和Bem1p成分存在物理关联,我们认为芽位点选择基因Rsr1p和Axl1p可能在交配过程中介导基于Fus2p的融合事件的信息素控制。