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植物乳杆菌WCFS1β-果糖苷酶:通过催化结构域的开放漏斗状通道的证据及其对底物选择性的重要性。

Lactobacillus plantarum WCFS1 β-Fructosidase: Evidence for an Open Funnel-Like Channel Through the Catalytic Domain with Importance for the Substrate Selectivity.

作者信息

Mendoza-Llerenas Edgar Omar, Pérez David Javier, Gómez-Sandoval Zeferino, Escalante-Minakata Pilar, Ibarra-Junquera Vrani, Razo-Hernández Rodrigo Said, Capozzi Vittorio, Russo Pasquale, Spano Giuseppe, Fiocco Daniela, Osuna-Castro Juan Alberto, Moreno Abel

机构信息

Facultad de Ciencias Químicas, Universidad de Colima, Carr. Colima-Coquimatlán, km 9, Coquimatlán, Colima, México, C.P. 28400.

Laboratorio de Bioingeniería, Universidad de Colima, Carr. Colima-Coquimatlán, km 9, Coquimatlán, Colima, México, C.P. 28400.

出版信息

Appl Biochem Biotechnol. 2016 Nov;180(6):1056-1075. doi: 10.1007/s12010-016-2152-2. Epub 2016 Jun 13.

Abstract

β-Fructosidase, a glycoside hydrolase of a biotechnologically important strain, was studied for its biochemical, physicochemical, and three-dimensional structure characteristics. This enzyme was heterologously expressed in Escherichia coli as a C-terminal His-tagged protein (SacB). β-Fructosidase catalyzes the cleavage of glycoside bonds toward certain carbohydrates with β-fructofuranosyl linkages; however, SacB exhibited selectivity toward sucrose and an optimum activity at pH 6.0-6.5 and 37 °C. In such optimum enzymatic activity conditions, the SacB was commonly observed as a monodisperse protein by dynamic light scattering (DLS). As β-fructosidase belongs to glycoside hydrolase family 32 (GH32), a β-sandwich and a five-bladed β-propeller domain are typical predicted folds in its structure. Docking and molecular dynamic simulations revealed for the first time a funnel-like channel perfectly exposed in the β-propeller domain of the Lactobacillus plantarum β-fructosidase (this allows the interaction between its entire catalytic triad and substrates that are larger than sucrose). In contrast, SacB showed a closed central tunnel collaterally induced by its His-tag.

摘要

对一种具有重要生物技术意义的菌株的糖苷水解酶β-果糖苷酶的生化、物理化学和三维结构特征进行了研究。该酶作为C端带有His标签的蛋白(SacB)在大肠杆菌中进行了异源表达。β-果糖苷酶催化具有β-D-呋喃果糖基连接的特定碳水化合物糖苷键的裂解;然而,SacB对蔗糖表现出选择性,在pH 6.0 - 6.5和37℃时具有最佳活性。在这种最佳酶活性条件下,通过动态光散射(DLS)通常观察到SacB是一种单分散蛋白。由于β-果糖苷酶属于糖苷水解酶家族32(GH32),其结构中典型的预测折叠是β-三明治和五叶β-螺旋桨结构域。对接和分子动力学模拟首次揭示了植物乳杆菌β-果糖苷酶的β-螺旋桨结构域中完美暴露的漏斗状通道(这使得其整个催化三联体与大于蔗糖的底物之间能够相互作用)。相比之下,SacB显示出由其His标签旁侧诱导形成的封闭中央通道。

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