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Finding the Sweet Spot: How Human Fungal Pathogens Acquire and Turn the Sugar Inositol against Their Hosts

机译:找到最有效的点:人类真菌病原体如何获取糖肌醇并将其转化为宿主

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ABSTRACT Inositol is an essential nutrient with important structural and signaling functions in eukaryotes. Its role in microbial pathogenesis has been reported in fungi, protozoans, and eubacteria. In a recent article, Porollo et al. [ mBio 5(6):e01834-14, 2014, doi:10.1128/mBio.01834-14] demonstrated the importance of inositol metabolism in the development and viability of Pneumocystis species—obligate fungal pathogens that remain unculturable in vitro . To understand their obligate nature, the authors used innovative comparative genomic approaches and discovered that Pneumocystis spp. are inositol auxotrophs due to the lack of inositol biosynthetic enzymes and that inositol insufficiency is a contributing factor preventing fungal growth in vitro . This work is in accord with other studies suggesting that inositol plays a conserved role in microbial pathogenesis. Inositol uptake and metabolism therefore may represent novel antimicrobial drug targets. Using comparative genomics to analyze metabolic pathways offers a powerful tool to gain new insights into nutrient utilization in microbes, especially obligate pathogens.
机译:摘要肌醇是真核生物中具有重要结构和信号传导功能的必需营养素。在真菌,原生动物和真细菌中已经报道了其在微生物发病机理中的作用。在最近的一篇文章中,Porollo等人。 [mBio 5(6):e01834-14,2014,doi:10.1128 / mBio.01834-14]证明了肌醇代谢在肺孢子虫种类(专性真菌病原体,在体外仍不可培养)的发育和生存能力中的重要性。为了了解其专一性,作者使用了创新的比较基因组方法,并发现了肺孢菌。由于肌醇生物合成酶的缺乏和肌醇不足是阻止真菌在体外生长的一个重要因素,是肌醇营养缺陷型的。这项工作与其他研究一致,表明肌醇在微生物发病机理中起着保守的作用。因此,肌醇的摄取和代谢可能代表了新型的抗菌药物靶标。使用比较基因组学分析代谢途径提供了一个强大的工具,可以使人们对微生物尤其是专性病原体的养分利用获得新的见解。

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