Inhibition of Anthrax Lethal Factor by alpha-defensins
Inhibition of Anthrax Lethal Factor by alpha-defensins
批准号:
7329150
负责人:
WUYUAN LU
金额:
$36.79万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-12-15 至 2011-11-30
关键词:
Affinity LabelsAlanineAlgorithmsAmino AcidsAnimalsAnthrax antitoxinAnthrax diseaseAntigensAntimicrobial Cationic PeptidesAntitoxinsBacillus anthracisBacillus anthracis sporeBacteriaBindingCell membraneCessation of lifeClassClassificationCleaved cellComplexCultured CellsCytolysisCytosolDefensinsDissociationDoctor of PhilosophyEnzyme KineticsEnzymesEpitopesEquilibriumFamilyGenerationsHumanImmuneInbred BALB C MiceInfectionMAP Kinase GeneMAPK Signaling Pathway PathwayMapsMass Spectrum AnalysisMetalloproteasesMicrobeMitogen-Activated Protein Kinase KinasesMolecularMusMutagenesisMutationNumbersPathogenesisPhagocytesPlayPositioning AttributeProteinsRangeReportingResearch PersonnelRoleScanningSignal PathwaySignal TransductionSpectrum AnalysisSurface Plasmon ResonanceSymptomsTechniquesTestingTherapeuticThermodynamicsVirulence FactorsVirusaffinity labelingalpha-Defensinsanaloganthrax lethal factoranthrax protective factoranthrax toxinbasecell killingcytotoxicitydesigndrug developmentedema factorfungusimprovedin vivoinhibitor/antagonistkillingsmacrophagememberneutrophilnovelpathogenpreventprogramssmall moleculetherapeutic targetuptake
中文摘要
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英文摘要
Anthrax toxin consists of three proteins secreted by Bacillus anthracis - protective antigen (PA), edema
factor (EF) and lethal factor (LF). LF is a Zn2+-dependent metalloprotease that cleaves members of the
mitogen-activated protein kinase kinase (MAPKK) family, blocking the MARK signaling pathway in
professional phagocytes. The binary complex of PA and LF alone, termed lethal toxin or LeTx, is sufficient to
nduce death of target cells and kill experimental animals, manifesting the symptoms associated with
anthrax. As one of the primary virulence factors in the pathogenesis of anthrax, LF has become an important
therapeutic target for drug development. A number of small-molecule-based inhibitors of LF have been
shown to be able to neutralize cytotoxicityof LeTx in cell cultures and lethality of LeTx in animal trials,
promising potential therapeutic value in the treatment of anthrax infection.
Human neutrophil a-defensins (HNPs) are members of a growing family of small cationic antimicrobial
peptides that kill a broad range of microbes such as bacteria, fungi and viruses, playing an important role in
the innate immune defense against infectious pathogens. Kaufmann and colleagues recently discovered that
HNP1 non-competitively inhibits LF, preventing cleavage of a MAPKK and restoring impaired MAPK
signaling in LeTx-treated macrophages (Kim et al., 2005). Further, HNP1 rescued murine macrophages from
B. a/tfftrac/s-induced cytotoxicity, and in wVo treatment with HNP1-3 protected mice against the fatal
consequences of LeTx (Kim et al 2005). In a subsequent report, Mayer-Scholl et al. (2005) demonstrated
that B. anthracis spores engulfed by human neutrophils and germinated intracellularly can be effectively
killed by HNPs. These findings raise the possibility that a-defensins may be developed as a novel class of
antitoxins to combat anthrax infection.
Despite the therapeutic potential of a-defensin-based antitoxins for anthrax treatment, the molecular basis
for the inhibition of LF by a-defensins remains poorly understood. In this proposal, we seek to decipher the
sequence rules and structural determinants that dictate the inhibition of LF by a-defensins, and to design
second-generation defensin molecules with significantly improved inhibitory activity.
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海外基金