The GraS Sensor in Staphylococcus aureus Mediates Resistance to Host Defense Peptides Differing in Mechanisms of Action

被引:32
作者
Chaili, Siyang [1 ,2 ,3 ]
Cheung, Ambrose L. [4 ]
Bayer, Arnold S. [2 ,3 ,5 ]
Xiong, Yan Q. [2 ,3 ,5 ]
Waring, Alan J. [1 ,3 ,5 ]
Memmi, Guido [4 ]
Donegan, Niles [4 ]
Yang, Soo-Jin [6 ]
Yeaman, Michael R. [1 ,2 ,3 ,5 ]
机构
[1] Los Angeles Cty Harbor UCLA Med Ctr, Div Mol Med, Torrance, CA USA
[2] Los Angeles Cty Harbor UCLA Med Ctr, Div Infect Dis, Torrance, CA USA
[3] Harbor UCLA Med Ctr, Los Angeles Biomed Res Inst, Torrance, CA 90509 USA
[4] Geisel Sch Med Dartmouth, Dept Microbiol, Hanover, NH USA
[5] Univ Calif Los Angeles, David Geffen Sch Med, Los Angeles, CA 90095 USA
[6] Chung Ang Univ, Sch Bioresources & Biosci, Anseong, South Korea
基金
美国国家卫生研究院;
关键词
VRAFG ABC TRANSPORTER; ANTIMICROBIAL PEPTIDES; SYSTEM; PHOSPHATIDYLSERINE; MEMBRANE; PROTEINS;
D O I
10.1128/IAI.01030-15
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Staphylococcus aureus uses the two-component regulatory system GraRS to sense and respond to host defense peptides (HDPs). However, the mechanistic impact of GraS or its extracellular sensing loop (EL) on HDP resistance is essentially unexplored. Strains with null mutations in the GraS holoprotein (Delta graS) or its EL (Delta EL) were compared for mechanisms of resistance to HDPs of relevant immune sources: neutrophil alpha-defensin (human neutrophil peptide 1 [hNP-1]), cutaneous beta-defensin (human beta-defensin 2 [hBD-2]), or the platelet kinocidin congener RP-1. Actions studied by flow cytometry included energetics (ENR); membrane permeabilization (PRM); annexin V binding (ANX), and cell death protease activation (CDP). Assay conditions simulated bloodstream (pH 7.5) or phagolysosomal (pH 5.5) pH contexts. S. aureus strains were more susceptible to HDPs at pH 7.5 than at pH 5.5, and each HDP exerted a distinct effect signature. The impacts of Delta graS and Delta EL on HDP resistance were peptide and pH dependent. Both mutants exhibited defects in ANX response to hNP-1 or hBD-2 at pH 7.5, but only hNP-1 did so at pH 5.5. Both mutants exhibited hyper-PRM, -ANX, and -CDP responses to RP-1 at both pHs and hypo-ENR at pH 5.5. The actions correlated with Delta graS or Delta EL hypersusceptibility to hNP-1 or RP-1 (but not hBD-2) at pH 7.5 and to all study HDPs at pH 5.5. An exogenous EL mimic protected mutant strains from hNP-1 and hBD-2 but not RP-1, indicating that GraS and its EL play nonredundant roles in S. aureus survival responses to specific HDPs. These findings suggest that GraS mediates specific resistance countermeasures to HDPs in immune contexts that are highly relevant to S. aureus pathogenesis in humans.
引用
收藏
页码:459 / 466
页数:8
相关论文
共 33 条
[1]   Prokaryotic Caspase Homologs: Phylogenetic Patterns and Functional Characteristics Reveal Considerable Diversity [J].
Asplund-Samuelsson, Johannes ;
Bergman, Birgitta ;
Larsson, John .
PLOS ONE, 2012, 7 (11)
[2]  
Chaili S, 2014, 54 INT C ANT AG CHEM
[3]   Site-Specific Mutation of the Sensor Kinase GraS in Staphylococcus aureus Alters the Adaptive Response to Distinct Cationic Antimicrobial Peptides [J].
Cheung, Ambrose L. ;
Bayer, Arnold S. ;
Yeaman, Michael R. ;
Xiong, Yan Q. ;
Waring, Alan J. ;
Memmi, Guido ;
Donegan, Niles ;
Chaili, Siyang ;
Yang, Soo-Jin .
INFECTION AND IMMUNITY, 2014, 82 (12) :5336-5345
[4]   Antibiotic-Induced Bacterial Cell Death Exhibits Physiological and Biochemical Hallmarks of Apoptosis [J].
Dwyer, Daniel J. ;
Camacho, Diogo M. ;
Kohanski, Michael A. ;
Callura, Jarred M. ;
Collins, James J. .
MOLECULAR CELL, 2012, 46 (05) :561-572
[5]   The Lipid-Modifying Multiple Peptide Resistance Factor Is an Oligomer Consisting of Distinct Interacting Synthase and Flippase Subunits [J].
Ernst, Christoph M. ;
Kuhn, Sebastian ;
Slavetinsky, Christoph J. ;
Krismer, Bernhard ;
Heilbronner, Simon ;
Gekeler, Cordula ;
Kraus, Dirk ;
Wagner, Samuel ;
Peschel, Andreas .
MBIO, 2015, 6 (01)
[6]   GraXSR Proteins Interact with the VraFG ABC Transporter To Form a Five-Component System Required for Cationic Antimicrobial Peptide Sensing and Resistance in Staphylococcus aureus [J].
Falord, Melanie ;
Karimova, Gouzel ;
Hiron, Aurelia ;
Msadek, Tarek .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2012, 56 (02) :1047-1058
[7]   Two Unique Phosphorylation-Driven Signaling Pathways Crosstalk in Staphylococcus aureus to Modulate the Cell-Wall Charge: Stk1/Stp1 Meets GraSR [J].
Fridman, Michael ;
Williams, G. Declan ;
Muzamal, Uzma ;
Hunter, Howard ;
Siu, K. W. Michael ;
Golemi-Kotra, Dasantila .
BIOCHEMISTRY, 2013, 52 (45) :7975-7986
[8]   Modulating immunity as a therapy for bacterial infections [J].
Hancock, Robert E. W. ;
Nijnik, Anastasia ;
Philpott, Dana J. .
NATURE REVIEWS MICROBIOLOGY, 2012, 10 (04) :243-254
[9]   Mechanisms of resistance to antimicrobial peptides in staphylococci [J].
Joo, Hwang-Soo ;
Otto, Michael .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2015, 1848 (11) :3055-3061
[10]  
KANFER JN, 1962, J BIOL CHEM, V237, pP270