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首页> 外文期刊>Eukaryotic cell >Pheromones Stimulate Mating and Differentiation via Paracrine and Autocrine Signaling in Cryptococcus neoformans
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Pheromones Stimulate Mating and Differentiation via Paracrine and Autocrine Signaling in Cryptococcus neoformans

机译:信息素通过新型隐球菌的旁分泌和自分泌信号刺激交配和分化。

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Cryptococcus neoformans is a pathogenic fungus with a defined sexual cycle involving haploid MATα and MATa cells. Interestingly, MATα strains are more common, are more virulent than congenic MATa strains, and undergo haploid fruiting in response to nitrogen limitation or MATa cells. Three genes encoding the MFα pheromone were identified in the MATα mating-type locus and shown to be transcriptionally induced by limiting nutrients and coculture with MATa cells. The MFα1, MFα2, and MFα3 genes were mutated, individually and in combination. MATα strains lacking MFα pheromone failed to induce morphological changes in MATa cells. Pheromoneless MATα mutants were fusion and mating impaired but not sterile and mated at ~1% the wild-type level. The pheromoneless MATα mutants were also partially defective in haploid fruiting, and overexpression of MFα pheromone enhanced haploid fruiting. Overexpression of MFa pheromone also enhanced haploid fruiting of MATα cells and stimulated conjugation tube formation in MATa cells. A conserved G-protein activated mitogen-activated protein kinase signaling pathway was found to be required for both induction and response to mating pheromones. The MFα pheromone was not essential for virulence of C. neoformans but does contribute to the overall virulence composite. These studies define paracrine and autocrine pheromone response pathways that signal mating and differentiation of this pathogenic fungus.
机译:新型隐球菌是一种病原真菌,具有明确的性周期,涉及单倍体 MAT α和 MAT a细胞。有趣的是, MAT α菌株比同质的 MAT a菌株更常见,毒性更强,并且响应氮限制或 MAT 而经历单倍体结实。一个细胞。在 MAT α交配型基因座中鉴定出三个编码MFα信息素的基因,并显示它们是通过限制营养并与 MAT a细胞共培养而被转录诱导的。分别对MFα1MFα2MFα3基因进行突变。缺少MFα信息素的 MAT α菌株未能诱导 MAT a细胞的形态变化。无信息素的 MAT α突变体融合和交配受损,但不是不育的,以野生型水平约1%交配。无信息素的 MAT α突变体在单倍体结实中也有部分缺陷,而MFα信息素的过表达增强了单倍体结实。 MFa信息素的过表达还增强了 MAT α细胞的单倍体结实,并刺激了 MAT a细胞的共轭管形成。发现保守的G蛋白活化的丝裂原活化的蛋白激酶信号传导途径是诱导和对交配信息素的反应所必需的。 MFα信息素对于 C的毒力不是必需的。新甲虫,但确实对整体毒性有贡献。这些研究定义了旁分泌和自分泌信息素应答途径,这些信号传导这种病原真菌的交配和分化。

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