Identification of FtpA, a Dps-Like Protein Involved in Anti-Oxidative Stress and Virulence in Actinobacillus pleuropneumoniae

被引:0
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作者
Tang, Hao [1 ,2 ]
Zhang, Qiuhong [1 ,2 ]
Han, Weiyao [1 ,2 ]
Wang, Zhenyue [1 ,2 ]
Pang, Siqi [1 ,2 ]
Zhu, Han [1 ,2 ]
Tan, Kangning [1 ,2 ]
Liu, Xiao [1 ,2 ]
Langford, Paul R. [3 ]
Huang, Qi [1 ,2 ,4 ,5 ]
Zhou, Rui [1 ,2 ,4 ,5 ]
Li, Lu [1 ,2 ,4 ,5 ]
机构
[1] Huazhong Agr Univ, Coll Vet Med, State Key Lab Agr Microbiol, Wuhan, Hubei, Peoples R China
[2] Cooperat Innovat Ctr Sustainable Pig Prod, Key Lab Prevent Vet Med Hubei Prov, Wuhan, Hubei, Peoples R China
[3] Imperial Coll London, Sect Paediat Infect Dis, St Marys Campus, London, England
[4] Minist Sci & Technol Peoples Republ China, Int Res Ctr Anim Dis, Wuhan, Hubei, Peoples R China
[5] Minist Agr & Rural Affairs Peoples Republ China, Key Lab Dev Vet Diagnost Prod, Wuhan, Hubei, Peoples R China
基金
国家重点研发计划; 英国生物技术与生命科学研究理事会; 中国国家自然科学基金;
关键词
oxidative stress; FtpA; Dps; ferroxidase; Fenton reaction; virulence; Actinobacillus pleuropneumoniae; ESCHERICHIA-COLI DPS; HYDROGEN-PEROXIDE; HAEMOPHILUS-DUCREYI; IRON INCORPORATION; OXIDATIVE DAMAGE; BINDING PROTEIN; FERRITIN; TRANSCRIPTION; SUPEROXIDE; RESISTANCE;
D O I
10.1128/jb.00326-21
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Bacteria have evolved a variety of enzymes to eliminate endogenous or host-derived oxidative stress factors. The Dps protein, first identified in Escherichia coli, contains a ferroxidase center, and protects bacteria from reactive oxygen species damage. Little is known of the role of Dps-like proteins in bacterial pathogenesis. Actinobacillus pleuropneumoniae causes pleuropneumonia, a respiratory disease of swine. The A. pleuropneumoniae ftpA gene is upregulated during shifts to anaerobiosis, in biofilms and, as found in this study, in the presence of H2O2. An A. pleuropneumoniae ftpA deletion mutant (Delta ftpA) had increased H2O2 sensitivity, decreased intracellular viability in macrophages, and decreased virulence in a mouse infection model. Expression of ftpA in an E. coli dps mutant restored wild-type H2O2 resistance. FtpA possesses a conserved ferritin domain containing a ferroxidase site. Recombinant rFtpA bound and oxidized Fe2+ reversibly. Under aerobic conditions, the viability of an Delta ftpA mutant was reduced compared with the wild-type strain after extended culture, upon transition from anaerobic to aerobic conditions, and upon supplementation with Fenton reaction substrates. Under anaerobic conditions, the addition of H2O2 resulted in a more severe growth defect of Delta ftpA than it did under aerobic conditions. Therefore, by oxidizing and mineralizing Fe2+, FtpA alleviates the oxidative damage mediated by intracellular Fenton reactions. Furthermore, by mutational analysis, two residues were confirmed to be critical for Fe2+ binding and oxidization, as well as for A. pleuropneumoniae H2O2 resistance. Taken together, the results of this study demonstrate that A. pleuropneumoniae FtpA is a Dps-like protein, playing critical roles in oxidative stress resistance and virulence. IMPORTANCE As a ferroxidase, Dps of Escherichia coli can protect bacteria from reactive oxygen species damage, but its role in bacterial pathogenesis has received little attention. In this study, FtpA of the swine respiratory pathogen A. pleuropneumoniae was identified as a new Dps-like protein. It facilitated A. pleuropneumoniae resistance to H2O2, survival in macrophages, and infection in vivo. FtpA could bind and oxidize Fe2+ through two important residues in its ferroxidase site and protected the bacteria from oxidative damage mediated by the intracellular Fenton reaction. These findings provide new insights into the role of the FtpA-based antioxidant system in the pathogenesis of A. pleuropneumoniae, and the conserved Fe2+ binding ligands in Dps/FtpA provide novel drug target candidates for disease prevention.
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页数:16
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