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Functional Characterization of an α-Factor-Like Sordaria macrospora Peptide Pheromone and Analysis of Its Interaction with Its Cognate Receptor in Saccharomyces cerevisiae

机译:酿酒酵母中类似α-因子的Sordaria macrospora肽信息素的功能表征及其与其同源受体的相互作用分析

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The homothallic filamentous ascomycete Sordaria macrospora possesses genes which are thought to encode two pheromone precursors and two seven-transmembrane pheromone receptors. The pheromone precursor genes are termed ppg1 and ppg2. The putative products derived from the gene sequence show structural similarity to the α-factor precursors and >a-factor precursors of the yeast Saccharomyces cerevisiae. Likewise, sequence similarity has been found between the putative products of the pheromone receptor genes pre2 and pre1 and the S. cerevisiae Ste2p α-factor receptor and Ste3p >a-factor receptor, respectively. To investigate whether the α-factor-like pheromone-receptor pair of S. macrospora is functional, a heterologous yeast assay was used. Our results show that the S. macrospora α-factor-like pheromone precursor PPG1 is processed into an active pheromone by yeast MATα cells. The S. macrospora PRE2 protein was demonstrated to be a peptide pheromone receptor. In yeast MAT>a cells lacking the endogenous Ste2p receptor, the S. macrospora PRE2 receptor facilitated all aspects of the pheromone response. Using a synthetic peptide, we can now predict the sequence of one active form of the S. macrospora peptide pheromone. We proved that S. macrospora wild-type strains secrete an active pheromone into the culture medium and that disruption of the ppg1 gene in S. macrospora prevents pheromone production. However, loss of the ppg1 gene does not affect vegetative growth or fertility. Finally, we established the yeast assay as an easy and useful system for analyzing pheromone production in developmental mutants of S. macrospora.
机译:同型丝状子囊菌(Sordaria macrospora)具有被认为编码两个信息素前体和两个七跨膜信息素受体的基因。信息素前体基因称为 ppg1 ppg2 。从该基因序列推导出的推定产物与α因子前体和> a 具有结构相似性。同样,在信息素受体基因 pre2 pre1 的推定产物之间发现了序列相似性。 S。啤酒酵母中的Ste2pα因子受体和Ste3p > a 因子受体。调查是否是 S的α因子样信息素受体对。 macrospora 功能正常,使用了异源酵母检测。我们的结果表明, S。酵母MATα细胞将大孢子类α因子信息素前体PPG1加工成活性信息素。 S。大孢子 PRE2蛋白被证明是一种肽信息素受体。在酵母 MAT > a 细胞中,缺少内源性Ste2p受体 S。大孢子虫PRE2受体促进信息素反应的各个方面。现在,使用合成肽,我们可以预测 S的一种活性形式的序列。大孢子肽信息素。我们证明了 S。大孢子虫野生型菌株在培养基中分泌活性信息素,并破坏 S中的 ppg1 基因。 macrospora 可防止产生信息素。但是, ppg1 基因的丢失不会影响营养生长或繁殖力。最后,我们建立了酵母分析方法,作为分析 S发育突变体中信息素产生的简便实用系统。大孢子虫

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