Hossain Md Anowar, Roslan Hairul Azman
Department of Biochemistry and Molecular Biology, University of Rajshahi, Rajshahi 6205, Bangladesh ; Genetic Engineering Laboratory, Department of Molecular Biology, Faculty of Resource Science and Technology, Universiti Malaysia Sarawak, 94300 Kota Samarahan, Sarawak, Malaysia.
Genetic Engineering Laboratory, Department of Molecular Biology, Faculty of Resource Science and Technology, Universiti Malaysia Sarawak, 94300 Kota Samarahan, Sarawak, Malaysia.
ScientificWorldJournal. 2014;2014:186029. doi: 10.1155/2014/186029. Epub 2014 Jul 20.
beta-D-N-Acetylhexosaminidase, a family 20 glycosyl hydrolase, catalyzes the removal of β-1,4-linked N-acetylhexosamine residues from oligosaccharides and their conjugates. We constructed phylogenetic tree of β-hexosaminidases to analyze the evolutionary history and predicted functions of plant hexosaminidases. Phylogenetic analysis reveals the complex history of evolution of plant β-hexosaminidase that can be described by gene duplication events. The 3D structure of tomato β-hexosaminidase (β-Hex-Sl) was predicted by homology modeling using 1now as a template. Structural conformity studies of the best fit model showed that more than 98% of the residues lie inside the favoured and allowed regions where only 0.9% lie in the unfavourable region. Predicted 3D structure contains 531 amino acids residues with glycosyl hydrolase20b domain-I and glycosyl hydrolase20 superfamily domain-II including the (β/α)8 barrel in the central part. The α and β contents of the modeled structure were found to be 33.3% and 12.2%, respectively. Eleven amino acids were found to be involved in ligand-binding site; Asp(330) and Glu(331) could play important roles in enzyme-catalyzed reactions. The predicted model provides a structural framework that can act as a guide to develop a hypothesis for β-Hex-Sl mutagenesis experiments for exploring the functions of this class of enzymes in plant kingdom.
β-D-N-乙酰己糖胺酶是一种20家族的糖基水解酶,催化从寡糖及其缀合物中去除β-1,4-连接的N-乙酰己糖胺残基。我们构建了β-己糖胺酶的系统发育树,以分析植物己糖胺酶的进化历史和预测功能。系统发育分析揭示了植物β-己糖胺酶复杂的进化历史,这可以通过基因复制事件来描述。以1now为模板,通过同源建模预测了番茄β-己糖胺酶(β-Hex-Sl)的三维结构。对最佳拟合模型的结构一致性研究表明,超过98%的残基位于有利和允许区域内,只有0.9%位于不利区域。预测的三维结构包含531个氨基酸残基,具有糖基水解酶20b结构域-I和糖基水解酶20超家族结构域-II,中央部分包括(β/α)8桶状结构。发现建模结构的α和β含量分别为33.3%和12.2%。发现11个氨基酸参与配体结合位点;Asp(330)和Glu(331)可能在酶催化反应中起重要作用。预测模型提供了一个结构框架,可作为开发假设的指南,用于β-Hex-Sl诱变实验,以探索这类酶在植物界的功能。