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The cAMP pathway is important for controlling the morphological switch to the pathogenic yeast form of Paracoccidioides brasiliensis

机译:cAMP通路对于控制向巴西副球菌致病性酵母形态的形态转换很重要

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摘要

Paracoccidioides brasiliensis is a human pathogenic fungus that switches from a saprobic mycelium to a pathogenic yeast. Consistent with the morphological transition being regulated by the cAMP-signalling pathway, there is an increase in cellular cAMP levels both transiently at the onset (< 24 h) and progressively in the later stages (> 120 h) of the transition to the yeast form, and this transition can be modulated by exogenous cAMP. We have cloned the cyr1 gene encoding adenylate cyclase (AC) and established that its transcript levels correlate with cAMP levels. In addition, we have cloned the genes encoding three Gα (Gpa1–3), Gβ (Gpb1) and Gγ (Gpg1) G proteins. Gpa1 and Gpb1 interact with one another and the N-terminus of AC, but neither Gpa2 nor Gpa3 interacted with Gpb1 or AC. The interaction of Gpa1 with Gpb1 was blocked by GTP, but its interaction with AC was independent of bound nucleotide. The transcript levels for gpa1, gpb1 and gpg1 were similar in mycelium, but there was a transient excess of gpb1 during the transition, and an excess of gpa1 in yeast. We have interpreted our findings in terms of a novel signalling mechanism in which the activity of AC is differentially modulated by Gpa1 and Gpb1 to maintain the signal over the 10 days needed for the morphological switch.
机译:巴西副球菌是一种人类致病真菌,它从腐生菌丝体转变为致病酵母。与cAMP信号通路调节的形态学转变相一致,细胞中cAMP的水平在过渡到酵母形式的开始(<24 h)短暂地和后期(> 120 h)逐渐增加,并且此过渡可以通过外源性cAMP进行调节。我们已经克隆了编码腺苷酸环化酶(AC)的cyr1基因,并确定其转录水平与cAMP水平相关。此外,我们已经克隆了编码三种Gα(Gpa1-3),Gβ(Gpb1)和Gγ(Gpg1)G蛋白的基因。 Gpa1和Gpb1彼此相互作用,并与AC的N端相互作用,但Gpa2和Gpa3都不与Gpb1或AC相互作用。 Gpa1与Gpb1的相互作用被GTP阻断,但其与AC的相互作用独立于结合的核苷酸。在菌丝体中,gpa1,gpb1和gpg1的转录水平相似,但是在过渡过程中存在短暂的gpb1过量,而在酵母中则有gpa1过量。我们已经用一种新颖的信号传导机制解释了我们的发现,在这种信号传导机制中,AC的活性受到Gpa1和Gpb1的差异调节,可以在形态转换所需的10天内保持信号。

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