Department of Biochemical Engineering, Graduate School of Sciences and Engineering, Yamagata University, Jonan, Yonezawa, Yamagata, 992-8510, Japan.
Department of Industrial Biotechnology, Faculty of Agro-industry, Prince of Songkla University, Hat Yai, 90112, Thailand.
Sci Rep. 2019 Oct 25;9(1):15295. doi: 10.1038/s41598-019-51822-5.
Glycoside hydrolase (GH) 87-type α-1,3-glucanase hydrolyses the α-1,3-glucoside linkages of α-1,3-glucan, which is found in fungal cell walls and extracellular polysaccharides produced by oral Streptococci. In this study, we report on the molecular structure of the catalytic unit of GH 87-type α-1,3-glucanase, Agl-KA, from Bacillus circulans, as determined by x-ray crystallography at a resolution of 1.82 Å. The catalytic unit constitutes a complex structure of two tandemly connected domains-the N-terminal galactose-binding-like domain and the C-terminal right-handed β-helix domain. While the β-helix domain is widely found among polysaccharide-processing enzymes, complex formation with the galactose-binding-like domain was observed for the first time. Biochemical assays showed that Asp1067, Asp1090 and Asp1091 are important for catalysis, and these residues are indeed located at the putative substrate-binding cleft, which forms a closed end and explains the product specificity.
糖苷水解酶 (GH) 87 型 α-1,3-葡聚糖酶水解 α-1,3-葡聚糖中的 α-1,3-糖苷键,该酶存在于真菌细胞壁和口腔链球菌产生的细胞外多糖中。在这项研究中,我们通过 X 射线晶体学以 1.82Å 的分辨率报告了来自环状芽孢杆菌的 GH 87 型 α-1,3-葡聚糖酶 Agl-KA 的催化单元的分子结构。催化单元由两个串联连接的结构域——N 端半乳糖结合样结构域和 C 端右手β-螺旋结构域组成。虽然β-螺旋结构域广泛存在于多糖加工酶中,但与半乳糖结合样结构域的复合形成是首次观察到的。生化分析表明 Asp1067、Asp1090 和 Asp1091 对催化很重要,这些残基确实位于假定的底物结合裂隙处,裂隙形成封闭端,解释了产物特异性。