The role of GraRS in resistance to cationic antimicrobial peptides in S. aureus
The role of GraRS in resistance to cationic antimicrobial peptides in S. aureus
批准号:
8582532
负责人:
Ambrose Lin Yau Cheung
金额:
$48.7万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-12-01 至 2015-11-30
关键词:
ATP phosphohydrolaseATP-Binding Cassette TransportersAlanineAnatomyAnimalsAntibiotic ResistanceAntibioticsAntimicrobial Cationic PeptidesAreaBacteremiaBacteriaBindingBlood CirculationBlood PlateletsBody FluidsChargeCommunitiesCommunity HospitalsComplementCyclic PeptidesDaptomycinDevelopmentEndocarditisEventExposure toFocal InfectionFutureGenesGeneticGenomeGoalsHMGN ProteinsHost DefenseHumanIndiumIndividualInfectionInfectious Skin DiseasesInfective endocarditisIntegration Host FactorsLengthLifeLinkLysineMediatingMembraneMembrane BiologyMicroarray AnalysisModelingMolecularMolecular GeneticsMutationNatural ImmunityOperonOrganismOryctolagus cuniculusOutcomeOxacillinPathogenesisPatientsPeptidesPhospholipidsPhosphotransferasesPlayPolymyxin ResistancePredispositionProteinsResearchResistanceResistance developmentRiskRoleSourceStaphylococcus aureusStimulusStructureStructure-Activity RelationshipSurfaceSystemTeichoic AcidsTissuesVancomycinVancomycin-resistant S. aureusVirulenceVirulentantimicrobialantimicrobial peptidebasedesignepimeraseextracellularin vivoindolicidininterestkillingsmethicillin resistant Staphylococcus aureusneutrophilpathogenpeptide structurepermeasepublic health relevanceresistance mechanismresponsesensorskillssugar
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): S. aureus is a highly adaptive human pathogen. One result of this adaptation is its ability to develop resistance cationic antimicrobial peptides (CAPs), which are an important part of innate immunity in the hosts. In perusing the S. aureus genomes, we found four two component regulatory systems each of lie adjacent to an ABC transporter system. One of the system, GraRS, regulates the adjacent VraFG efflux system comprising an ATPase and a membrane permease. Mutations in graR or vraG have led to a reduction in resistance to CAPs such as RP-1 (a congener to PMP-1 from platelets) and hNP-1 (from neutrophils), indolicidin and LL37. As an intravascular pathogen, S. aureus likely encounters CAPs from platelets and neutrophils (RP-1 and hNP-1), which we will focus on in this proposal. The exposure of S. aureus to selective CAP has also led to induction of graRS and vraFG and other genes relevant CAP resistance including mprF, dltABCD and also another set of ABC transporter genes vraDE, based on induction studies and microarray analysis. However, the exact contribution of these genes to CAP resistance mediated by GraRS in S. aureus is not defined (Aim I). In addition, in contrast to S. epidermidis where the expression of graRS and vraFG can be induced by any CAPs, the induction in S. aureus is more selective, responding to only a few CAPs. Based on the difference in the sequence of the kinase sensor GraS between S. aureus and S. epidermidis, we propose to define the exact residues within GraS that mediate this recognition of specific CAPs for induction of downstream genes (Aim II). Besides the bacterial factors, we are also interested in the structure of synthetic CAPs and their ability to bind and induce expression of graRS (Aim III). Finally, the in vivo correlate of these finding in GraRS will be explored in a relevant rabbit model of infective endocarditis. Together, these studies will elicit the scientific basis of innate resistance to relevant host CAPs in S. aureus, thus providing a platform to devise strategies to alleviate resistance to cationic antimicrobial peptides.
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海外基金