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Interspecies pheromone signaling promotes biofilm formation and same-sex mating in Candida albicans

机译:种间信息素信号传导促进白色念珠菌的生物膜形成和同性交配

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摘要

The opportunistic pathogen Candida albicans undergoes a parasex-ual mating cycle in which cells must switch from the conventional "white" form to the alternative "opaque" form to become mating competent. Pheromones secreted by opaque cells induce the formation of polarized mating projections and result in cell-cell conjugation. In contrast, white cells are unable to undergo mating, but can still respond to pheromone by expression of adhesion genes that promote biofilm formation. In this study, we have analyzed the dual ability of pheromones to activate mating by opaque cells and biofilm formation by white cells. We first show that there is considerable plasticity in interactions between the a pheromone and its receptor, Ste2, by analysis of analogs of the a pheromone. Significantly, substituted forms of a pheromone can induce a response in opaque cells and this is sufficient to drive same-sex a-a cell fusion and homothallic mating. In addition, pheromone analogs were able to induce adhesion and biofilm formation in white cells of C. albicans. Because of the observed plasticity in pheromone signaling, we subsequently tested putative pheromones from multiple Candida species and identified non native ligands that can induce self-mating and biofilm responses in C. albicans. Our findings demonstrate that environmental signals can initiate C. albicans parasexual reproduction and biofilm formation, and highlight the role of the pheromone-signaling apparatus in mediating these functions.
机译:机会病原体白色念珠菌经历了双性恋交配循环,其中细胞必须从常规的“白色”形式转换为替代的“不透明”形式,才能具有交配能力。不透明细胞分泌的信息素诱导极化交配突起的形成,并导致细胞与细胞的结合。相反,白细胞无法进行交配,但仍能通过表达促进生物膜形成的粘附基因来响应信息素。在这项研究中,我们分析了信息素激活不透明细胞交配和白细胞形成生物膜的双重能力。我们首先表明,通过信息素类似物的分析,信息素与其受体Ste2之间的相互作用具有相当大的可塑性。重要的是,信息素的取代形式可以在不透明的细胞中诱导反应,这足以驱动同性a-a细胞融合和同型交配。另外,信息素类似物能够在白色念珠菌的白细胞中诱导粘附和生物膜形成。由于在信息素信号传导中观察到可塑性,我们随后测试了来自多个念珠菌物种的推定信息素,并鉴定了可诱导白色念珠菌自我交配和生物膜反应的非天然配体。我们的发现表明环境信号可以启动白色念珠菌的无性繁殖和生物膜形成,并突出了信息素信号传导装置在介导这些功能中的作用。

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