Structural, enzymatic and biochemical studies on Helicobacter pylori arginase

被引:21
作者
Zhang, Xiaoli [1 ]
Zhang, Jinyong [1 ]
Zhang, Rui [1 ]
Guo, Ying [1 ]
Wu, Chao [1 ]
Mao, Xuhu [1 ]
Guo, Gang [1 ]
Zhang, Ying [2 ]
Li, Defeng [2 ]
Zou, Quanming [1 ]
机构
[1] Third Mil Med Univ, Dept Clin Microbiol & Immunol, Coll Med Lab, Chongqing 400038, Peoples R China
[2] Chinese Acad Sci, Natl Lab Biomacromol, Inst Biophys, Beijing 100101, Peoples R China
基金
美国国家科学基金会;
关键词
Helicobacter pylori; Arginase; Crystal structure; Arginase activity; Oligomerization; IMMUNE-RESPONSE; ACID; INHIBITION; PURIFICATION; EXPRESSION; SUPERFAMILY; ACTIVATION; INSIGHT; COMPLEX; SYSTEM;
D O I
10.1016/j.biocel.2013.02.008
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Arginase is an enzyme involved in the last step of the urea cycle, where it catalyses the hydrolysis of L-arginine to generate L-ornithine and urea. Compared to the well-characterised arginases from animals, yeast and other bacteria, Helicobacter pylori arginase, or RocF, is unique in at least three aspects. Firstly, it has been identified as an important factor in evasion of the host's immune system and thus contributes to persistent infection by the bacterium. Secondly, the optimal catalytic conditions of RocF are different from those of other arginases. Finally, sequence alignment indicates that RocF possesses considerable differences at its N- and C-terminal from other arginases and harbours an insertion of 13 residues in the middle of the sequence. To better understand these unique biochemical and enzymatic properties, we therefore have embarked on determining the structure of RocF. In this study, the crystal structure of RocF was solved with the molecular replacement method. Based on the structure and systematic mutagenesis studies, we confirmed that the inserted residues form a helix that was not observed in other arginases and was able to raise the arginase activity by 30% probably by change the conformation of the substrate binding pocket. Six residues were involved in Mn2+ binding, all of which were essential for arginase activity. The C-terminal motif is not sufficient in establishing the oligomeric state of RocF, and no disulphide bonds were observed in RocF. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:995 / 1002
页数:8
相关论文
共 43 条
[1]   CATALYTICALLY ACTIVE MONOMER FORMS OF IMMOBILIZED ARGINASE [J].
AGUIRRE, R ;
KASCHE, V .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1983, 130 (02) :373-381
[2]   Immune subversion by Helicobacter pylori [J].
Baldari, CT ;
Lanzavecchia, A ;
Telford, JL .
TRENDS IN IMMUNOLOGY, 2005, 26 (04) :199-207
[3]   Crystal structures of Bacillus caldovelox arginase in complex with substrate and inhibitors reveal new insights into activation, inhibition and catalysis in the arginase superfamily [J].
Bewley, MC ;
Jeffrey, PD ;
Patchett, ML ;
Kanyo, ZF ;
Baker, EN .
STRUCTURE WITH FOLDING & DESIGN, 1999, 7 (04) :435-448
[4]   Crystallography & NMR system:: A new software suite for macromolecular structure determination [J].
Brunger, AT ;
Adams, PD ;
Clore, GM ;
DeLano, WL ;
Gros, P ;
Grosse-Kunstleve, RW ;
Jiang, JS ;
Kuszewski, J ;
Nilges, M ;
Pannu, NS ;
Read, RJ ;
Rice, LM ;
Simonson, T ;
Warren, GL .
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 1998, 54 :905-921
[5]   Spermine causes loss of innate immune response to Helicobacter pylori by inhibition of inducible nitric-oxide synthase translation [J].
Bussière, FI ;
Chaturvedi, R ;
Cheng, YL ;
Gobert, AP ;
Asim, M ;
Blumberg, DR ;
Xu, HX ;
Kim, PY ;
Hacker, A ;
Casero, RA ;
Wilson, KT .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (04) :2409-2412
[6]   Helicobacter pylori-induced macrophage apoptosis requires activation of ornithine decarboxylase by c-Myc [J].
Cheng, Y ;
Chaturvedi, R ;
Asim, M ;
Bussière, FI ;
Xu, HX ;
Casero, RA ;
Wilson, KT .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (23) :22492-22496
[7]   Density modification for macromolecular phase improvement [J].
Cowtan, KD ;
Zhang, KYJ .
PROGRESS IN BIOPHYSICS & MOLECULAR BIOLOGY, 1999, 72 (03) :245-270
[8]  
Cox JD, 1999, NAT STRUCT BIOL, V6, P1043
[9]   Crystal Structures of Complexes with Cobalt-Reconstituted Human Arginase I [J].
D'Antonio, Edward L. ;
Christianson, David W. .
BIOCHEMISTRY, 2011, 50 (37) :8018-8027
[10]   Crystal structure of human arginase I at 1.29-Å resolution and exploration of inhibition in the immune response [J].
Di Costanzo, L ;
Sabio, G ;
Mora, A ;
Rodriguez, PC ;
Ochoa, AC ;
Centeno, F ;
Christianson, DW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (37) :13058-13063