Staphylococcus aureus SaeR/S-regulated factors reduce human neutrophil reactive oxygen species production

被引:29
作者
Guerra, Fermin E. [1 ]
Addison, Conrad B. [2 ]
De Jong, Nienke W. M. [3 ]
Azzolino, Joseph [1 ]
Pallister, Kyler B. [1 ]
van Strijp, Jos A. G. [3 ]
Voyich, Jovanka M. [1 ]
机构
[1] Montana State Univ, Dept Microbiol & Immunol, 109 Lewis Hall,Cooley 223, Bozeman, MT 59718 USA
[2] Univ Washington, Sch Med, Seattle, WA USA
[3] Univ Med Ctr Utrecht, Med Microbiol, Utrecht, Netherlands
基金
美国国家卫生研究院;
关键词
innate immunity; bacteria; host-pathogen interactions; two-component systems; CHRONIC GRANULOMATOUS-DISEASE; NADPH OXIDASE; SUPEROXIDE; MYELOPEROXIDASE; PHAGOCYTOSIS; PHAGOSOME; VIRULENCE; PROTEINS; SYSTEM; ACTIVATION;
D O I
10.1189/jlb.4VMAB0316-100RR
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Neutrophils are the first line of defense after a pathogen has breached the epithelial barriers, and unimpaired neutrophil functions are essential to clear infections. Staphylococcus aureus is a prevalent human pathogen that is able to withstand neutrophil killing, yet the mechanisms used by S. aureus to inhibit neutrophil clearance remain incompletely defined. The production of reactive oxygen species (ROS) is a vital neutrophil antimicrobial mechanism. Herein, we test the hypothesis that S. aureus uses the SaeR/S two-component gene regulatory system to produce virulence factors that reduce neutrophil ROS production. With the use of ROS probes, the temporal and overall production of neutrophil ROS was assessed during exposure to the clinically relevant S. aureus USA300 (strain LAC) and its isogenic mutant LAC Delta saeR/S. Our results demonstrated that SaeR/S-regulated factors do not inhibit neutrophil superoxide (O-2(-)) production. However, subsequent neutrophil ROS production was significantly reduced during exposure to LAC compared with LAC Delta saeR/S. In addition, neutrophil H2O2 production was reduced significantly by SaeR/S-regulated factors by a mechanism independent of catalase. Consequently, the reduction in neutrophil H2O2 resulted in decreased production of the highly antimicrobial agent hypochlorous acid/hypochlorite anion (HOCl/-OCl). These findings suggest a new evasion strategy used by S. aureus to diminish a vital neutrophil antimicrobial mechanism.
引用
收藏
页码:1005 / 1010
页数:6
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