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CAP1, an Adenylate Cyclase-Associated Protein Gene, Regulates Bud-Hypha Transitions, Filamentous Growth, and Cyclic AMP Levels and Is Required for Virulence of Candida albicans

机译:CAP1,腺苷酸环化酶相关的蛋白质基因,调节芽-菌丝的转化,丝状生长和环状AMP的水平,是白色念珠菌致病力所必需的

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摘要

In response to a wide variety of environmental stimuli, the opportunistic fungal pathogen Candida albicans exits the budding cycle, producing germ tubes and hyphae concomitant with expression of virulence genes, such as that encoding hyphal wall protein 1 (HWP1). Biochemical studies implicate cyclic AMP (cAMP) increases in promoting bud-hypha transitions, but genetic evidence relating genes that control cAMP levels to bud-hypha transitions has not been reported. Adenylate cyclase-associated proteins (CAPs) of nonpathogenic fungi interact with Ras and adenylate cyclase to increase cAMP levels under specific environmental conditions. To initiate studies on the relationship between cAMP signaling and bud-hypha transitions in C. albicans, we identified, cloned, characterized, and disrupted the C. albicans CAP1 gene. C. albicans strains with inactivated CAP1 budded in conditions that led to germ tube formation in isogenic strains with CAP1. The addition of 10 mM cAMP and dibutyryl cAMP promoted bud-hypha transitions and filamentous growth in the cap1/cap1 mutant in liquid and solid media, respectively, showing clearly that cAMP promotes hypha formation in C. albicans. Increases in cytoplasmic cAMP preceding germ tube emergence in strains having CAP1 were markedly diminished in the budding cap1/cap1 mutant. C. albicans strains with deletions of both alleles of CAP1 were avirulent in a mouse model of systemic candidiasis. The avirulence of a germ tube-deficient cap1/cap1 mutant coupled with the role of Cap1 in regulating cAMP levels shows that the Cap1-mediated cAMP signaling pathway is required for bud-hypha transitions, filamentous growth, and the pathogenesis of candidiasis.
机译:响应各种环境刺激,机会性真菌病原体白色念珠菌退出萌芽周期,产生胚管和菌丝,并伴有毒力基因的表达,例如编码菌丝壁蛋白1(HWP1)的毒力基因。生化研究表明,环状AMP(cAMP)在促进芽-菌丝过渡中增加,但是尚未有遗传证据表明控制cAMP水平与芽-菌丝转化有关的基因。非致病性真菌的腺苷酸环化酶相关蛋白(CAPs)与Ras和腺苷酸环化酶相互作用,以在特定环境条件下增加cAMP水平。为了开始研究白色念珠菌中cAMP信号与芽-菌丝过渡之间的关系,我们鉴定,克隆,表征和破坏了白色念珠菌CAP1基因。带有灭活的CAP1的白色念珠菌菌株在导致带有CAP1的同基因菌株中形成胚管的条件下萌芽。 10 mM cAMP和二丁酰cAMP的添加分别促进cap-cap1突变体在液体和固体培养基中的芽菌丝过渡和丝状生长,清楚表明cAMP促进了白色念珠菌的菌丝形成。在萌芽的cap1 / cap1突变体中,具有CAP1的菌株中胚管出现之前胞质cAMP的增加明显减少。在系统性念珠菌病小鼠模型中,CAP1两个等位基因缺失的白色念珠菌菌株无毒。缺乏生殖管缺陷的cap1 / cap1突变体的无毒能力,再加上Cap1在调节cAMP水平中的作用,表明Cap1介导的cAMP信号通路是芽菌丝过渡,丝状生长和念珠菌病发病机理所必需的。

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