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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Crystal structure of bile salt hydrolase from Lactobacillus salivarius
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Crystal structure of bile salt hydrolase from Lactobacillus salivarius

机译:来自乳杆菌的胆汁盐水解酶的晶体结构

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摘要

Bile salt hydrolase (BSH) is a gut-bacterial enzyme that negatively influences host fat digestion and energy harvesting. The BSH enzyme activity functions as a gateway reaction in the small intestine by the deconjugation of glycine-conjugated or taurine-conjugated bile acids. Extensive gut-microbiota studies have suggested that BSH is a key mechanistic microbiome target for the development of novel non-antibiotic food additives to improve animal feed production and for the design of new measures to control obesity in humans. However, research on BSH is still in its infancy, particularly in terms of the structural basis of BSH function, which has hampered the development of BSH-based strategies for improving human and animal health. As an initial step towards the structure-function analysis of BSH, C-terminally His-tagged BSH from Lactobacillus salivarius NRRL B-30514 was crystallized in this study. The 1.90 angstrom resolution crystal structure of L. salivarius BSH was determined by molecular replacement using the structure of Clostridium perfringens BSH as a starting model. It revealed this BSH to be a member of the N-terminal nucleophile hydrolase superfamily. Crystals of apo BSH belonged to space group P2(1)2(1)2, with unit-cell parameters a = 90.79, b = 87.35, c = 86.76 angstrom (PDB entry 5hke). Two BSH molecules packed perfectly as a dimer in one asymmetric unit. Comparative structural analysis of L. salivarius BSH also identified potential residues that contribute to catalysis and substrate specificity.
机译:胆汁盐水解酶(BSH)是一种带来宿主消化和能量收集的肠道细菌酶。 BSH酶活性通过甘氨酸缀合或牛磺酸缀合的胆汁酸的欺骗来作为小肠中的小肠中的网关反应。广泛的肠道微生物群研究表明,BSH是一种关键机制微生物组,用于开发新型非抗生素食品添加剂,以改善动物饲料生产,并为控制人类肥胖的新措施设计。然而,对BSH的研究仍处于初期阶段,特别是在BSH函数的结构基础方面,阻碍了基于BSH的策略改善人和动物健康的策略。作为BSH结构函数分析的初始步骤,在本研究中结晶了来自乳酸杆菌唾液中的C型末端他标记的BSH。通过使用蛋白质的结构Perfringens Bsh作为起始模型,通过分子替代测定L.唾液柱BSH的1.90埃升液结构。它揭示了这种BSH是N-末端亲核性水解酶超家族的成员。 APO BSH的晶体属于空间组P2(1)2(1)2,单位电池参数A = 90.79,B = 87.35,C = 86.76埃(PDB条目5HKE)。两个BSH分子在一个不对称单元中完美地填充为二聚体。 L.唾液生物BSH的比较结构分析还确定了有助于催化和底物特异性的潜在残基。

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