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Why does Candida albicans switch

机译:为什么白色念珠菌会切换

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White-opaque switching in Candida albicans was first discovered in 1987. Fifteen years later, and three years after the discovery of the mating system, it was demonstrated that the switch from white to opaque was an essential step in the mating process. But this latter discovery did not reveal why C. albicans had this requirement, when Saccharomyces cerevisiae and other hemiascomycetes did not. The discovery that mating-competent opaque cells signaled mating-incompetent white cells, through the release of pheromones, to become adhesive and form biofilms provided a clue to this fundamental question. Opaque cells appeared to signal white cells to form biofilms that facilitated mating by protecting the fragile gradients of the pheromone that directed chemotropism, a process necessary for fusion. Here, we explore the discoveries and observations that have led to this hypothesis, and the ancillary questions that have risen that are related to the regulation of the unique pheromone response, the evolution of this response and the relationship between pheromone-enhanced white cell biofilms and 'asexual' biofilms formed by a/l cells. This discussion, therefore, focuses on a unique and complex component of the basic biology of C. albicans that relates switching, mating and pathogenesis.
机译:在白色念珠菌中白色不透明的转换是在1987年首次发现的。十五年后以及发现交配系统三年后,证明了从白色到不透明的转换是交配过程中必不可少的步骤。但是后来的发现并没有揭示为什么白色念珠菌具有此要求,而酿酒酵母和其他半胱氨酸囊菌却没有。能够胜任交配的不透明细胞通过释放信息素来信号传递不胜任的白细胞,从而成为粘着剂并形成生物膜的发现,为这一基本问题提供了线索。不透明的细胞似乎向白细胞发出信号,以形成生物膜,从而通过保护引导趋化作用的信息素的脆弱梯度(融合所必需的过程)来促进交配。在这里,我们探索导致这一假说的发现和观察结果,以及与特定信息素应答的调节,该应答的演变以及信息素增强的白细胞生物膜和由a / l细胞形成的“无性”生物膜。因此,本讨论着重于白色念珠菌基础生物学中与转换,交配和发病机理有关的独特而复杂的组成部分。

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