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幽门螺杆菌毒素HP0892的晶体结构,分辨率为1.8 Å,含两个锌离子(II)

Crystal structure of toxin HP0892 from Helicobacter pylori with two Zn(II) at 1.8 Å resolution.

作者信息

Im Hookang, Jang Sun-Bok, Pathak Chinar, Yang Yeon-Jin, Yoon Hye-Jin, Yu Tae-Kyung, Suh Jeong-Yong, Lee Bong-Jin

机构信息

Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Seoul, 151-742, Korea.

出版信息

Protein Sci. 2014 Jun;23(6):819-32. doi: 10.1002/pro.2465. Epub 2014 Apr 15.

Abstract

Antibiotic resistance and microorganism virulence have been consistently exhibited by bacteria and archaea, which survive in conditions of environmental stress through toxin-antitoxin (TA) systems. The HP0892-HP0893 TA system is one of the two known TA systems belonging to Helicobacter pylori. The antitoxin, HP0893, binds and inhibits the HP0892 toxin and regulates the transcription of the TA operon. Here, we present the crystal structure of the zinc-bound HP0892 toxin at 1.8 Å resolution. Reorientation of residues at the mRNase active site was shown. The involved residues, namely E58A, H86A, and H58A/ H60A, were mutated and the binding affinity was monitored by ITC studies. Through the structural difference between the apo and the metal-bound state, and using a homology modeling tool, the involvement of the metal ion in mRNase active site could be identified. The most catalytically important residue, His86, reorients itself to exhibit RNase activity. His47, Glu58, and His60 are involved in metal binding where Glu58 acts as a general base and His47 and His60 may also act as a general acid in enzymatic activity. Glu58 and Asp64 are involved in substrate binding and specific sequence recognition. Arg83 is involved in phosphate binding and stabilization of the transition state, and Phe90 is involved in base packing and substrate orientation.

摘要

细菌和古菌一直表现出抗生素抗性和微生物毒力,它们通过毒素-抗毒素(TA)系统在环境压力条件下存活。HP0892-HP0893 TA系统是幽门螺杆菌已知的两个TA系统之一。抗毒素HP0893结合并抑制HP0892毒素,并调节TA操纵子的转录。在此,我们展示了锌结合的HP0892毒素在1.8 Å分辨率下的晶体结构。显示了mRNA酶活性位点处残基的重新定向。对涉及的残基E58A、H86A和H58A/H60A进行了突变,并通过等温滴定量热法(ITC)研究监测了结合亲和力。通过无apo和金属结合状态之间的结构差异,并使用同源建模工具,可以确定金属离子在mRNA酶活性位点中的作用。催化最重要的残基His86重新定向自身以展现RNase活性。His47、Glu58和His60参与金属结合,其中Glu58作为一般碱,His47和His60在酶活性中也可能作为一般酸。Glu58和Asp64参与底物结合和特定序列识别。Arg83参与磷酸盐结合和过渡态的稳定,Phe90参与碱基堆积和底物定向。

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