Human susceptibility to Legionella infection
Human susceptibility to Legionella infection
批准号:
8900036
负责人:
Amal O Amer
金额:
$24.31万
依托单位:
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 2017-01-31
关键词:
ActinsAddressAlveolarAlveolar MacrophagesAntibioticsBacteriaBacterial InfectionsCaspaseCell DeathCellsComplexFutureHomologous GeneHumanImmuneImmune responseImmune systemImmunocompromised HostInfectionIntegration Host FactorsIrrigationLeadLegionellaLegionella pneumophilaLegionnaires&apos DiseaseLinkLungLysosomesMediatingMolecularMusNatural ImmunityPhagocytesPhagosomesPhosphorylationPneumoniaPopulationPositioning AttributePredispositionPrevention strategyPublishingRoleSignal PathwayTestingTherapeuticVaccinesVacuoleWild Type MouseWorkcofilindepolymerizationdesignhealthy volunteerhuman CASP4 proteininnovationinsightmacrophagemonocytenovelpathogenpermissivenesspolymerizationpreventprophylacticpublic health relevancetrafficking
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Caspases have been well studied in the context of cell death. We are among the first to describe non-apoptotic functions for caspases. We published that caspases influence phagosome lysosome fusion. This application extends our findings by addressing the molecular mechanism by which caspase-4 and -5 promote vesicular trafficking in human macrophages. Legionella is a bacterium that causes Legionnaires' disease, a human illness characterized by severe pneumonia with fatality rates up to 30%. Legionella infects those above 50 years and the immunocompromised. There is no vaccine and prophylactic antibiotics do not protect the susceptible population. Therefore, understanding why humans are susceptible will help design new strategies for prevention and treatment in the future. We found that in human macrophages, the Legionella-containing vacuole does not fuse with the lysosome and instead the bacteria survives and replicates. Typically, precise actin polymerization and depolymerization are required for proper vesicular trafficking and phagosome lysosome fusion. We hypothesize that Legionella disrupts the function of the actin polymerization machinery to prevent lysosomal fusion and to establish infection in human macrophages. Therefore, this proposal will provide a molecular framework to understand the mechanism by which caspase-4 and -5 contribute to the innate immune response. We will identify downstream effector molecules that can be targeted with therapeutics in the future to promote Legionella clearance. We have the expertise and availability of human cells, which is a rare combination to pursue this novel project.
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会议论文
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海外基金