State Key Laboratory Breeding Base for Sustainable Exploitation of Tropical Biotic Resources, Hainan University, Haikou, 570228, People's Republic of China.
World J Microbiol Biotechnol. 2014 Jan;30(1):213-23. doi: 10.1007/s11274-013-1444-8. Epub 2013 Jul 27.
A β-glucosidase gene bglX was cloned from Lactococcus sp. FSJ4 by the method of shotgun. The bglX open reading frame consisted of 1,437 bp, encoding 478 amino acids. SDS-PAGE showed a recombinant bglX monomer of 54 kDa. Substrate specificity study revealed that the enzyme exhibited multifunctional catalysis activity against pNPG, pNPX and pNPGal. This enzyme shows higher activity against aryl glycosides of xylose than those of glucose or galactose. The enzyme exhibited the maximal activity at 40 °C, and the optimal pH was 6.0 with pNPG and 6.5 with pNPX as the substrates. Molecular modeling and substrate docking showed that there should be one active center responsible for the mutifuntional activity in this enzyme, since the active site pocket was substantially wide to allow the entry of pNPG, pNPX and pNPGal, which elucidated the structure-function relationship in substrate specificities. Substrate docking results indicated that Glu180 and Glu377 were the essential catalytic residues of the enzyme. The CDOCKER_ENERGY values obtained by substrate docking indicated that the enzyme has higher activity against pNPX than those of pNPG and pNPGal. These observations are in conformity with the results obtained from experimental investigation. Therefore, such substrate specificity makes this β-glucosidase of great interest for further study on physiological and catalytic reaction processes.
通过鸟枪法从乳球菌 FSJ4 中克隆了β-葡萄糖苷酶基因 bglX。bglX 开放阅读框由 1437bp 组成,编码 478 个氨基酸。SDS-PAGE 显示重组 bglX 单体为 54kDa。底物特异性研究表明,该酶对 pNPG、pNPX 和 pNPGal 具有多功能催化活性。该酶对木糖的芳基糖苷显示出比葡萄糖或半乳糖更高的活性。该酶在 40°C 时表现出最大活性,在 pH6.0 时对 pNPG 和 pH6.5 时对 pNPX 的最适 pH 值。分子建模和底物对接表明,该酶中应该有一个活性中心负责多功能活性,因为活性位点口袋相当宽,可以允许 pNPG、pNPX 和 pNPGal 的进入,这阐明了底物特异性中的结构-功能关系。底物对接结果表明,Glu180 和 Glu377 是酶的必需催化残基。通过底物对接获得的 CDOCKER_ENERGY 值表明,该酶对 pNPX 的活性高于 pNPG 和 pNPGal。这些观察结果与实验研究的结果一致。因此,这种底物特异性使得这种β-葡萄糖苷酶在进一步研究生理和催化反应过程中具有很大的研究价值。