Krüger J, Loubradou G, Regenfelder E, Hartmann A, Kahmann R
Institut für Genetik und Mikrobiologie der Universität München, Germany.
Mol Gen Genet. 1998 Nov;260(2-3):193-8. doi: 10.1007/s004380050885.
In the phytopathogenic basidiomycete Ustilago maydis mating and dikaryon formation are controlled by a pheromone/receptor system and the multiallelic b locus. Recently, a gene encoding a G protein alpha subunit, gpa3, was isolated and has subsequently been implicated in pheromone signal transduction. Mutants deleted for gpa3 are sterile and nonpathogenic, and exhibit a morphology that is similar to that of mutants with defects in the adenylate cyclase gene uac1. We have found that the sterility and mutant morphology of gpa3 deletion strains can be rescued by exogenous cAMP. In these mutants and in the corresponding wild-type strains, exogenous cAMP stimulates pheromone gene expression to a level comparable to that seen in the pheromone-stimulated state. In addition, we demonstrate that uac1 is epistatic to gpa3. We conclude that Gpa3 controls the cAMP signalling pathway in U. maydis and discuss how this pathway feeds into the pheromone response.
在植物病原担子菌玉米黑粉菌中,交配和双核体形成受信息素/受体系统以及多等位基因b位点的控制。最近,一个编码G蛋白α亚基的基因gpa3被分离出来,随后被证明与信息素信号转导有关。缺失gpa3的突变体是不育的且无致病性,并且表现出与腺苷酸环化酶基因uac1有缺陷的突变体相似的形态。我们发现,外源cAMP可以挽救gpa3缺失菌株的不育性和突变体形态。在这些突变体和相应的野生型菌株中,外源cAMP将信息素基因表达刺激到与信息素刺激状态相当的水平。此外,我们证明uac1对gpa3是上位的。我们得出结论,Gpa3控制玉米黑粉菌中的cAMP信号通路,并讨论了该通路如何影响信息素反应。