真菌脂肽交配信息素:蛋白质烯酰化研究的模型系统。

G A Caldwell, F Naider, J M Becker
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引用次数: 8

摘要

在多种真菌物种中,单倍体细胞之间的交配是由肽信息素的作用启动的。几种真菌信息素的鉴定和表征表明它们具有共同的结构特征,可归类为脂肽。在生物合成过程中,这些信息素在输出之前经历了一系列翻译后加工事件。一种常见的修饰是在信息素前体的C端附着一个类异戊二烯基团。对这一生物合成途径的遗传和生化研究已经导致了对其他多肽(包括核层蛋白、几种囊泡运输蛋白和癌基因产物Ras)的异戊二烯化负责的基因和酶的阐明。酿酒酵母菌α因子是研究脂肽信息素生物合成、输出和生物活性的模型。除了与法尼基异戊烯基化外,α -因子还通过一种新的肽输出途径分泌,该途径利用哺乳动物多药耐药p -糖蛋白的酵母同源物。在其他真菌(包括人类免疫缺陷病毒相关的机会性病原体新形式隐球菌和植物病原体麦氏黑霉)中发现了假定的脂肽编码位点,这激发了人们对了解信息素在真菌增殖和致病性中的可能作用的兴趣。了解与不同真菌脂肽信息素相关的加工、输出和受体介导的信号转导途径的变化,将继续为高等真核生物中存在的类似机制提供见解。
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Fungal lipopeptide mating pheromones: a model system for the study of protein prenylation.

In a variety of fungal species, mating between haploid cells is initiated by the action of peptide pheromones. The identification and characterization of several fungal pheromones has revealed that they have common structural features classifying them as lipopeptides. In the course of biosynthesis, these pheromones undergo a series of posttranslational processing events prior to export. One common modification is the attachment of an isoprenoid group to the C terminus of the pheromone precursor. Genetic and biochemical investigations of this biosynthetic pathway have led to the elucidation of genes and enzymes which are responsible for isoprenylation of other polypeptides including the nuclear lamins, several vesicular transport proteins, and the oncogene product Ras. The alpha-factor of Saccharomyces cerevisiae serves as a model for studying the biosynthesis, export, and bioactivity of lipopeptide pheromones. In addition to being isoprenylated with a farnesyl group, the alpha-factor is secreted by a novel peptide export pathway utilizing a yeast homolog of the mammalian multidrug resistance P-glycoprotein. The identification of putative lipopeptide-encoding loci within other fungi, including the human immunodeficiency virus-associated opportunistic pathogen Cryptococcus neoformans and the plant pathogen Ustilago maydis, has stimulated much interest in understanding possible roles for pheromones in fungal proliferation and pathogenicity. Knowledge of variations within the processing, export, and receptor-mediated signal transduction pathways associated with different fungal lipopeptide pheromones will continue to provide insights into similar mechanisms which exist in higher eukaryotes.

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