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Small Molecule Inhibitors of the Candida albicans Budded-to-Hyphal Transition Act through Multiple Signaling Pathways

机译:白色念珠菌的小分子抑制剂通过多种信号通路向菌丝过渡到菌丝过渡。

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摘要

The ability of the pathogenic yeast Candida albicans to interconvert between budded and hyphal growth states, herein termed the budded-to-hyphal transition (BHT), is important for C. albicans development and virulence. The BHT is under the control of multiple cell signaling pathways that respond to external stimuli, including nutrient availability, high temperature, and pH. Previous studies identified 21 small molecules that could inhibit the C. albicans BHT in response to carbon limitation in Spider media. However, the studies herein show that the BHT inhibitors had varying efficacies in other hyphal-inducing media, reflecting their varying abilities to block signaling pathways associated with the different media. Chemical epistasis analyses suggest that most, but not all, of the BHT inhibitors were acting through either the Efg1 or Cph1 signaling pathways. Notably, the BHT inhibitor clozapine, a FDA-approved drug used to treat atypical schizophrenia by inhibiting G-protein-coupled dopamine receptors in the brain, and several of its functional analogs were shown to act at the level of the Gpr1 G-protein-coupled receptor. These studies are the first step in determining the target and mechanism of action of these BHT inhibitors, which may have therapeutic anti-fungal utility in the future.
机译:致病酵母念珠菌白色念珠菌在芽和菌丝生长状态之间相互转化的能力,在本文中称为芽到菌丝的转化(BHT),对于白色念珠菌的发育和毒力很重要。 BHT受多种细胞信号通路的控制,这些信号通路对外部刺激(包括养分利用率,高温和pH)作出反应。先前的研究确定了21种小分子,它们可以响应蜘蛛培养基中的碳限制而抑制白色念珠菌BHT。然而,本文的研究表明,BHT抑制剂在其他菌丝诱导培养基中具有不同的功效,反映了它们阻断与不同培养基相关的信号传导途径的不同能力。化学上位性分析表明,大多数(但不是全部)BHT抑制剂通过Efg1或Cph1信号通路起作用。值得注意的是,BHT抑制剂氯氮平是一种FDA批准的药物,可通过抑制脑中G蛋白偶联的多巴胺受体来治疗非典型精神分裂症,并且它的一些功能类似物在Gpr1 G蛋白水平上也有作用。偶联受体。这些研究是确定这些BHT抑制剂的靶标和作用机理的第一步,它们在将来可能具有治疗性抗真菌作用。

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