生物化学
细胞内
水解酶
化学
牛磺胆酸
酶
跨膜蛋白
胆汁酸
跨膜结构域
水解
突变体
互补
生物
ATP结合盒运输机
共轭体系
基质(水族馆)
运输机
共转运蛋白
囊性纤维化跨膜传导调节器
作者
Hua Wu,Yujie Chen,Jing-Wei Hu,Shu-Jun Guo,Bin Liu,Zhenpeng Gao,Zheng-Yuan Zhai,Lanwei Zhang,Chun-Feng Guo
标识
DOI:10.1021/acs.jafc.5c14654
摘要
The role of bile salt hydrolase (BSH) in Lactobacillus johnsonii ’s intestinal adaptability remains unclear. Here, we elucidate the functions and mechanisms of three BSH homologues (BSHA, BSHB, and BSHC) in mediating bile resistance in Lb. johnsonii ATCC 43121, using bsh knockout and complementation mutants and functional assays under simulated human small intestinal pH conditions. Functional tests showed BSHA and BSHC significantly enhanced the strain’s resistance to conjugated bile acids, whereas BSHB was ineffective due to low enzymatic activity. Mechanistically, BSHA and BSHC hydrolyze intracellular conjugated bile acids into free forms with high export efficiency, preserving membrane integrity and the homeostasis of the transmembrane pH gradient, transmembrane potential, and intracellular ATP and GTP. Molecular docking and molecular dynamics simulations revealed that steric hindrance in BSHB’s active pocket prevents substrate entry, whereas BSHA and BSHC accommodate all six tested conjugated bile acids, forming stable interactions specifically with the three glycine-conjugated bile acids.
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