董悦生

个人信息Personal Information

副教授

博士生导师

硕士生导师

性别:男

毕业院校:中国协和医科大学

学位:博士

所在单位:生物工程学院

学科:生物化工. 微生物学. 微生物与生化药学

办公地点:辽宁省大连市高新园区凌工路2号大连理工大学西部校区生物工程学院309室

联系方式:辽宁省大连市高新园区凌工路2号大连理工大学生物工程学院

电子邮箱:yshdong@dlut.edu.cn

扫描关注

论文成果

当前位置: 中文主页 >> 科学研究 >> 论文成果

Structural insight into the carboxylesterase BioH from Klebsiella pneumoniae

点击次数:

论文类型:期刊论文

发表时间:2019-10-12

发表刊物:Biochemical and biophysical research communications

收录刊物:PubMed

ISSN号:1090-2104

关键字:BioH,Biotin synthetic pathway,Carboxylesterase,Klebsiella pneumoniae

摘要:The BioH carboxylesterase which is a typical α/β-hydrolase enzyme involved in biotin synthetic pathway in most bacteria. BioH acts as a gatekeeper and blocks the further elongation of its substrate. In the pathogen Klebsiella pneumoniae, BioH plays a critical role in the biosynthesis of biotin. To better understand the molecular function of BioH, we determined the crystal structure of BioH from K. pneumoniae at 2.26 Å resolution using X-ray crystallography. The structure of KpBioH consists of an α-β-α sandwich domain and a cap domain. B-factor analysis revealed that the α-β-α sandwich domain is a rigid structure, while the loops in the cap domain shows the structural flexibility. The active site of KpBioH contains the catalytic triad (Ser82-Asp207-His235) on the interface of the α-β-α sandwich domain, which is surrounded by the cap domain. Size exclusion chromatography shows that KpBioH prefers the monomeric state in solution, whereas two-fold symmetric dimeric formation of KpBioH was observed in the asymmetric unit, the conserved Cys31-based disulfide bonds can maintain the irreversible dimeric formation of KpBioH. Our study provides important structural insight for understanding the molecular mechanisms of KpBioH and its homologous proteins.Copyright © 2019 Elsevier Inc. All rights reserved.