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GH10 Family of Glycoside Hydrolases: Structure and Evolutionary Connections

机译:GH10糖苷水解酶家族:结构与进化联系

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摘要

Evolutionary connections were analyzed for endo-beta-xylanases, which possess the GH10 family catalytic domains. A homology search yielded thrice as many proteins as are available from the Carbohydrate-Active Enzymes (CAZy) database. Lateral gene transfer was shown to play an important role in evolution of bacterial proteins of the family, especially in the phyla Acidobacteria, Cyanobacteria, Planctomycetes, Spirochaetes, and Verrucomicrobia. In the case of Verrucomicrobia, 23 lateral transfers from organisms of other phyla were detected. Evolutionary relationships were observed between the GH10 family domains and domains with the TIM-barrel tertiary structure from several other glycosidase families. The GH39 family of glycoside hydrolases showed the closest relationship. Unclassified homologs were grouped into 12 novel families of putative glycoside hydrolases (GHL51-GHL62).
机译:分析了进化连接的内在β-木聚糖酶,其具有GH10家族的催化域。同源搜索产生的蛋白质的数量是可从碳水化合物活性酶(CAZy)数据库获得的蛋白质的三倍。已显示横向基因转移在该家族细菌蛋白质的进化中起重要作用,尤其是在酸性细菌,蓝细菌,扁平菌,螺旋藻和疣状微生物菌中。在Verrucomicrobia的情况下,检测到23种来自其他门的生物的侧向转移。观察到GH10家族结构域与具有来自其他几个糖苷酶家族的TIM-桶三级结构的结构域之间的进化关系。 GH39糖苷水解酶家族表现出最密切的关系。未分类的同系物被分为12个新的推测的糖苷水解酶家族(GHL51-GHL62)。

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