Molecular and Cellular Dissection of Campylobacter Jejuni Effector Protein Function
Molecular and Cellular Dissection of Campylobacter Jejuni Effector Protein Function
批准号:
9298566
负责人:
Michael E Konkel
金额:
$38.22万
依托单位国家:
美国
项目类别:
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-06-16 至 2021-05-31
关键词:
ANGPTL2 geneAbdominal PainActinsAcuteAlpha CellAmino Acid MotifsAntigensAttenuatedBacteriaBacterial AdhesinsBindingBiological AssayBloodCampylobacterCampylobacter jejuniCell AdhesionCell physiologyCell-Matrix JunctionCellsCellular StructuresComplexCoupledCytoskeletal ModelingCytoskeletonCytosolDataDevelopmentDevicesDiarrheaDiseaseDisease modelDissectionEnzyme Inhibitor DrugsEpidermal Growth Factor ReceptorEpithelial CellsEventFeverFilopodiaGastrointestinal tract structureGoalsGuillain-Barré SyndromeIL8 geneIQ motif containing GTPase activating protein 1Immune responseImmunoprecipitationInfectionInflammatory ResponseIntestinesKnowledgeLaboratoriesLeukocytesLinkMediatingMembraneMethodsMicrobeMicrofilamentsModelingMolecularNauseaPTB DomainParalysedPathway interactionsPhosphorylationPoliomyelitisProductionProtein Kinase CProteinsPublicationsReceptor ActivationReportingResearchResearch PersonnelRoleSet proteinSignal PathwaySignal TransductionStructureTestingTherapeutic InterventionType III Secretion System PathwayVirulencebasecerebral cavernous malformationschemokinedisease phenotypeenteritisexperimental studyinhibitor/antagonistinsightmutantnew therapeutic targetnovelpathogenphosphoproteomicspreventprotein functionresponseuptake
中文摘要
题目:空肠弯曲杆菌效应蛋白对宿主细胞功能的调节
英文摘要
Title: Modulation of Host Cell Function by Campylobacter jejuni Effector Proteins
Project Summary
Infection with Campylobacter jejuni is responsible for millions of cases of diarrhea per year and is associated
with Guillain-Barré syndrome, the leading cause of flaccid paralysis in the post-polio era. Although researchers
have surmised for more than two decades that C. jejuni-mediated enteritis is dependent on invasion of the cells
lining the gastrointestinal tract and is accompanied by a robust inflammatory response, the pathogen and host
responses that contribute to C. jejuni-mediated enteritis are ill-defined. My lab discovered that this pathogen-
induced event (cell invasion) requires the delivery of proteins from C. jejuni to the cytosol of host cells. We
have designated these secreted proteins the Campylobacter invasion antigens (Cia). The Cia proteins co-opt
components of the focal complex (a cell-matrix adhesion structure) and the MEK/ERK signaling pathway to
trigger membrane ruffling (lamellipodia and filopodia extensions – cellular protrusions supported by actin
filaments). Our overall goal is to identify the mechanism(s) that C. jejuni utilizes to subvert components of the
focal complex (FC) to promote cell invasion through cytoskeletal reorganization. Contextually, these studies
will provide insight into how microbes modulate cellular signaling pathways to favor pathogen survival and
dissemination.
We have shown that the CiaC and CiaD effectors are necessary for C. jejuni cellular invasion. Our working
hypothesis is that these two effectors contain domains that direct the formation of the Campylobacter invasion
complex. More specifically, we hypothesize that CiaC and CiaD co-opt components of the FC and FC-
associated proteins that enable the cross-talk (convergence) of cellular pathways and trigger cytoskeletal
reorganization and chemokine production (IL-8) in host cells. The precise mechanism(s) that CiaC and CiaD
use to modulate cytoskeletal rearrangement and bacterial uptake are not known. Thus, our goal of elucidating
how the CiaC and CiaD effectors drive C. jejuni-cell invasion and chemokine induction is essential for
understanding the molecular and cellular basis of C. jejuni-mediated enteritis and is a prerequisite for the
development of targeted methods to prevent and treat C. jejuni disease.
The Specific Aims of this proposal are to:
1) Establish the host cell targets of both CiaC and CiaD;
2) Identify the host cell proteins phosphorylated in a CiaC- and CiaD-dependent manner and determine the
role of these phosphorylation events in modulating host cell signaling pathways; and
3) Test whether the C. jejuni CiaC and CiaD effectors are required for disease in piglets and determine if
deficiency of either protein results in a unique disease phenotype.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Dynamics of Campylobacter jejuni and host responses in the porcine intestinal-loop infection model
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批准号:9243740
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项目类别:
-
资助金额:$23.42万
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财政年份:2016
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负责人:Michael E Konkel
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依托单位:
Molecular mechanisms underlying Campylobacter jejuni cellular invasion
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批准号:8321730
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项目类别:
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资助金额:$32.42万
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财政年份:2011
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负责人:Michael E Konkel
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依托单位:
海外基金