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Phylogenomic Analyses of Nucleotide-Sugar Biosynthetic and Interconverting Enzymes Illuminate Cell Wall Composition in Fungi

机译:核苷酸 - 糖生物合成和互连酶的系统染料分析酶亮叶蛋白壁组合物在真菌中

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This study provides new insights into the complex evolutionary history of the fungal cell wall. We analyzed fungal enzymes that convert sugars acquired from the environment into the diverse sugars that make up the fundamental building blocks of the cell wall. ABSTRACT The fungi are an enormously successful eukaryotic lineage that has colonized every aerobic habitat on Earth. This spectacular expansion is reflected in the dynamism and diversity of the fungal cell wall, a matrix of polysaccharides and glycoproteins pivotal to fungal life history strategies and a major target in the development of antifungal compounds. Cell wall polysaccharides are typically synthesized by Leloir glycosyltransferases, enzymes that are notoriously difficult to characterize, but their nucleotide-sugar substrates are well known and provide the opportunity to inspect the monosaccharides available for incorporation into cell wall polysaccharides and glycoproteins. In this work, we have used phylogenomic analyses of the enzymatic pathways that synthesize and interconvert nucleotide-sugars to predict potential cell wall monosaccharide composition across 491 fungal taxa. The results show a complex evolutionary history of these cell wall enzyme pathways and, by association, of the fungal cell wall. In particular, we see a significant reduction in monosaccharide diversity during fungal evolution, most notably in the colonization of terrestrial habitats. However, monosaccharide distribution is also shown to be varied across later-diverging fungal lineages.
机译:本研究为真菌细胞壁的复杂进化史提供了新的见解。我们分析了真菌酶,使从环境中获得的糖转化为构成细胞壁基本构建块的多种糖。摘要真菌是一种非常成功的真核性血统,它在地球上殖民地殖民地。这种壮观的膨胀反映在真菌细胞壁的动力和多样性中,是多糖的基质和糖蛋白对真菌生命史策略的主要目标以及抗真菌化合物的发育中的主要目标。细胞壁多糖通常由Leloir糖基三烷基酶合成,难以难以表征的酶,但它们的核苷酸 - 糖底物是众所周知的并且提供检查可用于掺入细胞壁多糖和糖蛋白的单糖的机会。在这项工作中,我们使用了合成和互连核苷酸 - 糖的酶促途径的系统核发科学分析,以预测跨越491个真菌分类群的潜在细胞壁单糖组合物。结果表明,这种细胞壁酶途径的复杂进化史,并且通过结合的真菌细胞壁。特别是,我们在真菌演化中看到单糖多样性的显着降低,最值得注意的是在陆地栖息地的殖民中。然而,单糖分布也显示出在后发散的真菌谱系上变化。

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