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Genome mining of fungal lipid-degrading enzymes for industrial applications

机译:用于工业应用的真菌脂质降解酶的基因组挖掘

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摘要

Lipases are interesting enzymes, which contribute important roles in maintaining lipid homeostasis and cellular metabolisms. Using available genome data, seven lipase families of oleaginous and non-oleaginous yeast and fungi were categorized based on the similarity of their amino acid sequences and conserved structural domains. Of them, triacylglycerol lipase (patatin-domain-containing protein) and steryl ester hydrolase (abhydro_lipase-domain-containing protein) families were ubiquitous enzymes found in all species studied. The two essential lipases rendered signature characteristics of integral membrane proteins that might be targeted to lipid monolayer particles. At least one of the extracellular lipase families existed in each species of yeast and fungi. We found that the diversity of lipase families and the number of genes in individual families of oleaginous strains were greater than those identified in non-oleaginous species, which might play a role in nutrient acquisition from surrounding hydrophobic substrates and attribute to their obese phenotype. The gene/enzyme catalogue and relevant informative data of the lipases provided by this study are not only valuable toolboxes for investigation of the biological role of these lipases, but also convey potential in various industrial applications.
机译:脂肪酶是有趣的酶,在维持脂质稳态和细胞代谢中起重要作用。使用可获得的基因组数据,基于它们的氨基酸序列和保守结构域的相似性,对七个含油和非含油酵母和真菌的脂肪酶家族进行了分类。其中,三酰基甘油脂酶(含有patatin域的蛋白质)和甾醇酯水解酶(abhydro_lipase含蛋白质)家族是所有研究物种中普遍存在的酶。这两种必需的脂肪酶提供了可能针对脂质单层颗粒的完整膜蛋白的特征标记。每种酵母和真菌中都存在至少一种细胞外脂肪酶家族。我们发现,脂肪酶家族中脂肪酶家族的多样性和单个家族中基因的数量要大于非油脂性物种中所鉴定的家族,这可能与周围疏水性底物的营养获取有关,并归因于它们的肥胖表型。这项研究提供的脂肪酶的基因/酶目录和相关的信息数据,不仅是研究这些脂肪酶生物学作用的有价值的工具箱,而且还传达了在各种工业应用中的潜力。

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