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Farnesol and Cyclic AMP Signaling Effects on the Hypha-to-Yeast Transition in Candida albicans

机译:法尼醇和循环AMP信号传导对白色念珠菌的菌丝-酵母过渡

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Candida albicans, a fungal pathogen of humans, regulates its morphology in response to many environmental cues and this morphological plasticity contributes to virulence. Farnesol, an autoregulatory molecule produced by C. albicans, inhibits the induction of hyphal growth by inhibiting adenylate cyclase (Cyr1). The role of farnesol and Cyr1 in controlling the maintenance of hyphal growth has been less clear. Here, we demonstrate that preformed hyphae transition to growth as yeast in response to farnesol and that strains with increased cyclic AMP (cAMP) signaling exhibit more resistance to farnesol. Exogenous farnesol did not induce the hypha-to-yeast transition in mutants lacking the Tup1 or Nrg1 transcriptional repressors in embedded conditions. Although body temperature is not required for embedded hyphal growth, we found that the effect of farnesol on the hypha-to-yeast transition varies inversely with temperature. Our model of Cyr1 activity being required for filamentation is also supported by our liquid assay data, which show increased yeast formation when preformed filaments are treated with farnesol. Together, these data suggest that farnesol can modulate morphology in preformed hyphal cells and that the repression of hyphal growth maintenance likely occurs through the inhibition of cAMP signaling.
机译:白色念珠菌是人类的真菌病原体,可根据许多环境提示调节其形态,这种形态可塑性有助于增加毒性。法尼索尔,由白色念珠菌产生的一种自动调节分子,通过抑制腺苷酸环化酶(Cyr1)来抑制菌丝生长的诱导。法尼醇和Cyr1在控制菌丝生长的维持中的作用尚不清楚。在这里,我们证明了预先形成的菌丝转变为对法尼醇的酵母生长反应,并且环AMP(cAMP)信号增强的菌株对法尼醇表现出更大的抵抗力。在嵌入条件下,缺少Tup1或Nrg1转录阻遏物的突变体中,外源性法尼醇不会诱导从菌丝到酵母的过渡。尽管嵌入式菌丝生长不需要体温,但我们发现法尼醇对菌丝向酵母菌转变的作用随温度成反比。我们的液体测定数据也支持我们的丝状化所需的Cyr1活性模型,当使用法尼醇对预制的丝进行处理时,该数据显示酵母形成增加。总之,这些数据表明,法尼醇可以调节预先形成的菌丝细胞的形态,并且抑制菌丝生长的可能性很可能是通过抑制cAMP信号传导来实现的。

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