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G protein signaling governing cell fate decisions involves opposing G alpha subunits in Cryptococcus neoformans

机译:G蛋白信号决定细胞命运的决定涉及新隐球菌中相反的G alpha亚基

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摘要

Communication between cells and their environments is often mediated by G protein-coupled receptors and cognate G proteins. In fungi, one such signaling cascade is the mating pathway triggered by pheromone/pheromone receptor recognition. Unlike Saccharomyces cerevisiae, which expresses two G alpha subunits, most filamentous ascomycetes and basidiomycetes have three G alpha subunits. Previous studies have defined the G alpha subunit acting upstream of the cAMP-protein kinase A pathway, but it has been unclear which G alpha subunit is coupled to the pheromone receptor and response pathway. Here we report that in the pathogenic basidiomycetous yeast Cryptococcus neoformans, two G alpha subunits (Gpa2, Gpa3) sense pheromone and govern mating. gpa2 gpa3 double mutants, but neither gpa2 nor gpa3 single mutants, are sterile in bilateral crosses. By contrast, deletion of GPA3 (but not GPA2) constitutively activates pheromone response and filamentation. Expression of GPA2 and GPA3 is differentially regulated: GPA3 expression is induced by nutrient-limitation, whereas GPA2 is induced during mating. Based on the phenotype of dominant active alleles, Gpa2 and Gpa3 signal in opposition: Gpa2 promotes mating, whereas Gpa3 inhibits. The incorporation of an additional G alpha into the regulatory circuit enabled increased signaling complexity and facilitated cell fate decisions involving choice between yeast growth and filamentous asexual/sexual development.
机译:细胞与其环境之间的通讯通常是由G蛋白偶联受体和相关G蛋白介导的。在真菌中,一种这样的信号级联是信息素/信息素受体识别触发的交配途径。与酿酒酵母表达两个Gα亚基不同,大多数丝状子囊菌和担子菌都具有三个Gα亚基。先前的研究已定义了在cAMP-蛋白激酶A途径上游起作用的Gα亚基,但目前尚不清楚哪个Gα亚基与信息素受体和反应途径偶联。在这里,我们报告说,在致病性的担子菌酵母新隐球菌中,两个Gα亚基(Gpa2,Gpa3)感知信息素并控制交配。 gpa2 gpa3双突变体,但gpa2和gpa3单突变体在双侧杂交中均不育。相比之下,GPA3(而不是GPA2)的缺失组成性地激活信息素反应和丝化。 GPA2和GPA3的表达受到差异调节:GPA3的表达受营养限制,而GPA2则在交配过程中被诱导。基于显性活跃等位基因的表型,Gpa2和Gpa3在对立信号:Gpa2促进交配,而Gpa3抑制。在调节电路中加入额外的G alpha可以增加信号复杂性,并促进细胞命运决定,包括在酵母生长和丝状无性/性发育之间进行选择。

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