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酵母交配过程中的细胞融合需要高水平的a-因子交配信息素。

Cell fusion during yeast mating requires high levels of a-factor mating pheromone.

作者信息

Brizzio V, Gammie A E, Nijbroek G, Michaelis S, Rose M D

机构信息

Department of Molecular Biology, Princeton University, New Jersey 08544-1014, USA.

出版信息

J Cell Biol. 1996 Dec;135(6 Pt 2):1727-39. doi: 10.1083/jcb.135.6.1727.

Abstract

During conjugation, two yeast cells fuse to form a single zygote. Cell fusion requires extensive remodeling of the cell wall, both to form a seal between the two cells and to remove the intervening material. The two plasma membranes then fuse to produce a continuous cytoplasm. We report the characterization of two cell fusion defective (Fus-) mutants, fus5 and fus8, isolated previously in our laboratory. Fluorescence and electron microscopy demonstrated that the fus5 and fus8 mutant zygotes were defective for cell wall remodeling/removal but not plasma membrane fusion. Strikingly, fus5 and fus8 were a specific; both mutations caused the mutant phenotype when present in the MATa parent but not in the MAT alpha parent. Consistent with an a-specific defect, the fus5 and fus8 mutants produced less a-factor than the isogenic wild-type strain. FUS5 and FUS8 were determined to be allelic to AXL1 and RAM1, respectively, two genes known to be required for biogenesis of a-factor. Several experiments demonstrated that the partial defect in a-factor production resulted in the Fus- phenotype. First, overexpression of a-factor in the fus mutants suppressed the Fus- defect. Second, matings to an MAT alpha partner supersensitive to mating pheromone (sst2 delta) suppressed the Fus- defect in trans. Finally, the gene encoding a-factor, MFA1, was placed under the control of a repressible promoter; reduced levels of wild-type a-factor caused an identical cell fusion defect during mating. We conclude that high levels of pheromone are required as one component of the signal for prezygotes to initiate cell fusion.

摘要

在接合过程中,两个酵母细胞融合形成一个单一的合子。细胞融合需要对细胞壁进行广泛重塑,既要在两个细胞之间形成密封,又要去除中间物质。然后两个质膜融合产生连续的细胞质。我们报告了先前在我们实验室中分离出的两个细胞融合缺陷(Fus-)突变体fus5和fus8的特征。荧光和电子显微镜显示,fus5和fus8突变体合子在细胞壁重塑/去除方面存在缺陷,但质膜融合正常。引人注目的是,fus5和fus8具有特异性;当存在于MATa亲本中而不存在于MATα亲本中时,这两个突变都会导致突变表型。与a特异性缺陷一致,fus5和fus8突变体产生的a因子比同基因野生型菌株少。已确定FUS5和FUS8分别与AXL!和RAM1等位,这两个基因是已知a因子生物合成所必需的。几个实验表明,a因子产生的部分缺陷导致了Fus-表型。首先,在fus突变体中过表达a因子可抑制Fus-缺陷。其次,与对交配信息素超敏感的MATα伴侣(sst2Δ)交配可在反式中抑制Fus-缺陷。最后,将编码a因子的基因MFA1置于可抑制启动子的控制下;野生型a因子水平降低在交配过程中导致相同的细胞融合缺陷。我们得出结论,高水平的信息素是前合子启动细胞融合信号的一个组成部分。

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