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The Same Receptor G Protein and Mitogen-activated Protein Kinase Pathway Activate Different Downstream Regulators in the Alternative White and Opaque Pheromone Responses of Candida albicans

机译:相同的受体G蛋白和丝裂素活化的蛋白激酶途径激活白色念珠菌的替代性白色和不透明信息素反应中的不同下游调节剂。

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摘要

Candida albicans must undergo a switch from white to opaque to mate. Opaque cells then release mating type-specific pheromones that induce mating responses in opaque cells. Uniquely in C. albicans, the same pheromones induce mating-incompetent white cells to become cohesive, form an adhesive basal layer of cells on a surface, and then generate a thicker biofilm that, in vitro, facilitates mating between minority opaque cells. Through mutant analysis, it is demonstrated that the pathways regulating the white and opaque cell responses to the same pheromone share the same upstream components, including receptors, heterotrimeric G protein, and mitogen-activated protein kinase cascade, but they use different downstream transcription factors that regulate the expression of genes specific to the alternative responses. This configuration, although common in higher, multicellular systems, is not common in fungi, and it has not been reported in Saccharomyces cerevisiae. The implications in the evolution of multicellularity in higher eukaryotes are discussed.
机译:白色念珠菌必须经历从白色到不透明的交配。然后,不透明细胞释放出交配类型特异性信息素,该信息素在不透明细胞中诱导交配反应。在白色念珠菌中独特的是,相同的信息素会导致无法交配的白细胞变得凝聚,在表面上形成细胞的粘附基底层,然后生成更厚的生物膜,该膜在体外可促进少数不透明细胞之间的交配。通过突变分析表明,调节白色和不透明细胞对相同信息素的反应的途径具有相同的上游成分,包括受体,异源三聚体G蛋白和促分裂原活化的蛋白激酶级联反应,但它们使用的下游转录因子不同调节替代反应特异的基因的表达。这种结构虽然在较高的多细胞系统中很常见,但在真菌中并不常见,并且在酿酒酵母中也没有报道。讨论了在高等真核生物中多细胞进化的意义。

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