Jiangsu Key Laboratory for Microbes and Functional Genomics, Jiangsu Engineering and Technology Research Centre for Microbiology, College of Life Sciences, Nanjing Normal University, Nanjing, China.
School of Life Sciences, University of Dundee, Dundee, UK.
Mol Microbiol. 2021 Jul;116(1):245-259. doi: 10.1111/mmi.14706. Epub 2021 Mar 1.
Aspergillus fumigatus is an opportunistic mold responsible for severe life-threatening fungal infections in immunocompromised patients. The cell wall, an essential structure composed of glucan, chitin, and galactomannan, is considered to be a target for the development of antifungal drugs. The nucleotide sugar donor GDP-mannose (GDP-Man) is required for the biosynthesis of galactomannan, glycosylphosphatidylinositol (GPI) anchors, glycolipid, and protein glycosylation. Starting from fructose-6-phosphate, GDP-Man is produced by the sequential action of the enzymes phosphomannose isomerase, phosphomannomutase (Pmm), and GDP-mannose pyrophosphorylase. Here, using heterokaryon rescue and gene knockdown approaches we demonstrate that the phosphomannomutase encoding gene in A. fumigatus (pmmA) is essential for survival. Reduced expression of pmmA is associated with significant morphological defects including retarded germination, growth, reduced conidiation, and abnormal polarity. Moreover, the knockdown strain exhibited an altered cell wall organization and sensitivity toward cell wall perturbing agents. By solving the first crystal structure of A. fumigatus phosphomannomutase (AfPmmA) we identified non-conservative substitutions near the active site when compared to the human orthologues. Taken together, this work provides a genetic and structural foundation for the exploitation of AfPmmA as a potential antifungal target.
烟曲霉是一种机会致病菌,可导致免疫功能低下患者发生严重的危及生命的真菌感染。细胞壁是一种由葡聚糖、几丁质和半乳甘露聚糖组成的重要结构,被认为是开发抗真菌药物的靶标。核苷酸糖供体 GDP-甘露糖(GDP-Man)是半乳甘露聚糖、糖基磷脂酰肌醇(GPI)锚、糖脂和蛋白糖基化生物合成所必需的。从果糖-6-磷酸开始,GDP-Man 通过磷酸甘露糖异构酶、磷酸甘露糖变位酶(Pmm)和 GDP-甘露糖焦磷酸化酶的顺序作用产生。在这里,我们通过异核体拯救和基因敲低方法证明,烟曲霉中编码磷酸甘露糖变位酶的基因(pmmA)对生存是必需的。pmmA 的表达减少与明显的形态缺陷有关,包括发芽迟缓、生长缓慢、产孢减少和极性异常。此外,敲低菌株表现出细胞壁组织改变和对细胞壁破坏剂的敏感性增加。通过解析烟曲霉磷酸甘露糖变位酶(AfPmmA)的首个晶体结构,我们发现与人类同源物相比,活性位点附近存在非保守取代。总之,这项工作为 AfPmmA 作为潜在抗真菌靶标提供了遗传和结构基础。