Role of Tuberculosinyl Metabolites in M. Tuberculosis Virulence
Role of Tuberculosinyl Metabolites in M. Tuberculosis Virulence
批准号:
9207094
负责人:
DAVID Branch MOODY
金额:
$44.38万
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-02-01 至 2020-01-31
关键词:
ATP phosphohydrolaseAcidsAdenosineAnabolismAntibodiesAntigensBacteriaBiologicalBiological AssayBreathingCellsCellular biologyCessation of lifeCharacteristicsChemicalsDataDiagnosisDiagnostic testsDiseaseEnzymesEpidemicFamilyGenesGeneticGenus MycobacteriumGrowthHost DefenseHumanHydrolaseIn VitroInfectionLipidsLungMeasuresMediatingMembraneMembrane FusionMolecularMolecular TargetMusMycobacterium InfectionsMycobacterium tuberculosisNatureNitrogenNuclear Magnetic ResonanceNucleosidesOrganismOutcomeOxygenPathogenicityPatientsPeruPhagolysosomePhagosomesProcessProteinsProtonsPublishingResearchRoleSerumStructureTestingTransfectionTuberculosisUrineVaccinesVariantVirulenceVirulence FactorsVirulentadenosine receptor activationbasecohortexperimental studyextracellularin vivoinhibitor/antagonistinsightkillingsmacrophagemycobacterialnovel diagnosticspathogenprenylpublic health relevancetooltuberculosis treatment
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Role of tuberculosinyl metabolites in M. tuberculosis virulence Abstract Among all types of mycobacteria, Mycobacterium tuberculosis is the world's most prevalent and deadly pathogen. To find the particular molecules that enable its pathogenicity, we compared all detectable lipids in M. tuberculosis to those in a non-pathogenic vaccine strain (BCG). This subtractive screen identified a previously type of molecule called tuberculosinyl adenosine (TbAd) as well as the genes (Rv3377c, Rv3378c) that produce it. Although TbAd was overlooked in a century of tuberculosis research, our preliminary data show that TbAd is one of the most abundant lipids and is produced as six structurally related subfamilies. Published data show that M. tuberculosis is unique among mycobacteria in its ability to survive within the phagosomes of infected macrophages, based in its blockade of acid-mediated bacterial killing by macrophages. Our preliminary data show that TbAd is sufficient to block acidification of macrophage phagosomes. Therefore, we posit that TbAd and related tuberculosinyl metabolites are the long sought molecules that influence M. tuberculosis' unique ability to escape intracellular death. Here we propose to discover new tuberculosinyl metabolites in M. tuberculosis and determine their natural structures. Using synthetic TbAd and human macrophages, we will determine the cellular mechanism by which TbAd selectively inhibits phagosome acidification, while still allowing M. tuberculosis to be taken up into its phagosomal niche. Using M. tuberculosis lacking the biosynthetic enzymes (Rv 3378c, Rv3377c), we will measure the influence of TbAd in the outcome of natural infections. Last, we will test tuberculosinyl metabolites as targets for new diagnostic tests for human tuberculosis. Several features suggest that TbAd and TbAd-specific antibodies could be a highly specific chemical marker or infection. TbAd is abundantly secreted by M. tuberculosis, but is lacking in other pathogens that mimic tuberculosis. Therefore, we will detect TbAd and TbAd specific antibodies in serum and urine from a well-characterized patient cohort in Lima, Peru and in mice.
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Chemical Biological Discovery of Lipid Virulence Factors in the Major Bacterial Pathogens
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Metabolic determinants of Mtb virulence, vulnerability and variation
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依托单位:
Metabolic factors that control the spectrum of human tuberculosis
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项目类别:
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资助金额:$250.41万
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依托单位:
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资助金额:$33.46万
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财政年份:2015
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负责人:DAVID Branch MOODY
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依托单位:
Role of Tuberculosinyl Metabolites in M. Tuberculosis Virulence
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批准号:8996551
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项目类别:
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资助金额:$54.43万
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财政年份:2015
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负责人:DAVID Branch MOODY
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依托单位:
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