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pH 在皮肤癣菌病发病机制中的作用。

Role of pH in the pathogenesis of dermatophytoses.

机构信息

Departamento de Genética, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, SP, Brazil.

出版信息

Mycoses. 2012 Sep;55(5):381-7. doi: 10.1111/j.1439-0507.2011.02162.x. Epub 2011 Dec 30.

Abstract

The secretion of proteolytic enzymes by dermatophytes is a key factor in their invasion and subsequent dissemination through the stratum corneum of the host. During the first stages of infection, dermatophytes respond to the skin by de-repressing a number of genes coding for proteins and enzymes such as adhesins, lipases, phosphatases, DNAses, non-specific proteases, and keratinases. These proteins have their optimal activity at acidic pH values, which matches the acidic pH of human skin, allowing the pathogen to adhere and penetrate the host tissue, scavenge nutrients and overcome host defence mechanisms. The conserved PacC/Rim101p signal transduction pathway mediates diverse metabolic events involved in ambient pH sensing and in the virulence of pathogenic microorganisms. The seven dermatophyte genomes analysed here revealed the presence of the PacC/Rim101p pH-responsive signal transduction pathway, which consists of the six pal genes (palA, B, C, F, H and I) and the transcription factor PacC. The PacC binding site was present in the promoter regions of pacC, palB, palI and palH genes of all dermatophytes, suggesting functional equivalency with the signalling cascade of other fungi. Moreover, the promoter region of pacC gene of the seven dermatophytes had multiple PacC DNA-binding sites, suggesting that these genes, like their homologues in model fungi, are auto-regulated.

摘要

皮肤癣菌分泌的蛋白水解酶是其入侵和随后在宿主角质层中传播的关键因素。在感染的早期阶段,皮肤癣菌通过去抑制编码黏附素、脂肪酶、磷酸酶、DNase、非特异性蛋白酶和角蛋白酶等蛋白质和酶的许多基因来响应皮肤。这些蛋白质在酸性 pH 值下具有最佳活性,与人体皮肤的酸性 pH 值相匹配,使病原体能够黏附和穿透宿主组织,掠夺营养物质并克服宿主防御机制。保守的 PacC/Rim101p 信号转导途径介导涉及环境 pH 感应和致病微生物毒力的多种代谢事件。在这里分析的七个皮肤癣菌基因组中存在 PacC/Rim101p pH 响应信号转导途径,该途径由六个 pal 基因(palA、B、C、F、H 和 I)和转录因子 PacC 组成。PacC 结合位点存在于所有皮肤癣菌的 pacC、palB、palI 和 palH 基因的启动子区域中,表明与其他真菌的信号级联具有功能等效性。此外,这七个皮肤癣菌的 pacC 基因启动子区域有多个 PacC DNA 结合位点,表明这些基因与模式真菌中的同源基因一样,具有自我调控。

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