Targeting Epac synergistic component in cAMP signaling
Targeting Epac synergistic component in cAMP signaling
批准号:
8796038
负责人:
DANIEL L ALTSCHULER
金额:
$19.25万
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:
2015-08-01 至 2017-06-30
关键词:
AddressAdverse effectsBiologicalBiological AssayBiologyCell ProliferationCellsCollaborationsCollectionComplexCyclic AMPCyclic AMP-Dependent Protein KinasesDataDevelopmentDiseaseEvaluationFluorescence PolarizationFrightFutureGenerationsGoalsHealthHormonesIn VitroInterventionLeadLibrariesMediatingMembraneMolecular BankMonitorNatureNuclear TranslocationPathway interactionsPharmaceutical PreparationsPhosphorylationPhysiologicalPhysiologyProductionReproducibilityResearch ProposalsRoboticsRoleScaffolding ProteinSecond Messenger SystemsSignal PathwaySignal TransductionSpecificityTherapeuticTriageUnited States National Institutes of HealthValidationassay developmentbasecell typecytotoxicitydrug developmentdrug discoveryfollow-uphigh throughput screeninginhibitor/antagonistmemberminiaturizenovel strategiesprogramspublic health relevanceradixin proteinresponsescaffoldscreeningsecond messengersmall moleculesynergism
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): cAMP-dependent signaling regulates multiple physiological responses and its deregulation is involved in many pathological conditions. As such, it represented for many years a major focus for drug discovery; however, the ubiquitous nature of this signaling pathway also presented a burden for drug development due to fear of potential associated side effects. Thus, the development of new approaches for specific targeting is highly needed in the field. The current proposal builds upon the identification of a new complex involving the ERM member Radixin with cAMP effectors, i.e. Epac1 and PKA, and the role of the downstream substrate Rap1 as an integration node. cAMP effectors act synergistically, via Epac1-mediated activation and PKA- dependent phosphorylation of Rap1, to promote cAMP-dependent cell proliferation. Mechanistically, both effectors co-localize in a new sub-membrane compartment, forming a ternary complex with Radixin as the scaffolding unit. Maneuvers that disrupt this compartmentalization abrogate cAMP-mediated proliferation. Interestingly, expression of constitutively active Rap1 but only in its phosphorylated form (G12V-S179D) rescues this inhibition, thus confirming the role of Rap1 as a signal integrator unit of cAMP effector pathways. The overall hypothesis of this proposal is that the synergistic Radixin-Epac1-Rap1 component represents a valid target for pharmacological intervention providing a new rationale towards achieving higher specificity. We have delineated a full pilot screen program to characterize small molecule inhibitors of Epac1-Radixin interaction as part of the assessment of this hypothesis. We will accomplish this task in three integrated aims: 1) To develop and optimize HTS-compatible fluorescence polarization assays to monitor Epac1-Radixin interaction; 2) To validate this polarization assay in qHTS format utilizing a collection o bioactive compounds, and 3) To implement a set of orthogonal, secondary and follow-up assays to assess the significance of primary positive hits. Preliminary studies validate the concept and provide proof-of-principle for its feasibility. We submit that the successful completion of our studies will provide validated assays for the identification of new, selective drugs useful as pharmacological probes for addressing mechanistic aspects and investigating the functional role of Radixin-Epac1 in cAMP signaling that could eventually lead to future new pharmacologic strategies in cAMP-dependent hyperproliferative and other Epac1-mediated disorders. Our research proposal fulfills all of the specifications of PAR-13-364, entitled "Development of Assays for High- Throughput Screening for Use in Probe and Pre-therapeutic Discovery" namely, developing assays for a new specific biological target (i.e. Epac1-Radixin interaction) and establishing collaboration with established HTS centers (i.e. Dr Inglese, NCATS, NIH). Upon completion of the pilot campaign delineated in the current proposal, the qHTS and validation assays will be submitted via a Fast Track entry mechanism to the NIH Molecular Libraries Probe Production Centers Network (MPLCN) in the Molecular Libraries Program (MLP).
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会议论文
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Targeting Epac synergistic component in cAMP signaling
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cAMP effector pathways in TSH signaling
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Exploiting the cAMP pathway in Chagas Disease Therapy
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资助金额:$5.43万
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财政年份:2011
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Exploiting the cAMP pathway in Chagas Disease Therapy
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依托单位:
A Universal Mouse Line to Assess Tumor Clonality
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Rap 1b as a Mitogenic Signalin Thyroid
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Rap 1b as a Mitogenic Signalin Thyroid
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资助金额:$28.62万
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财政年份:2003
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依托单位:
Rap 1b as a Mitogenic Signaling Thyroid
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资助金额:$34.58万
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财政年份:2003
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依托单位:
Rap 1b as a mitogenic signal in thyroid
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资助金额:$32.3万
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财政年份:2003
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依托单位:
Rap 1b as a Mitogenic Signalin Thyroid
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Rap 1b as a mitogenic signal in thyroid
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项目类别:
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资助金额:$32.3万
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依托单位:
Rap 1b as a mitogenic signal in thyroid
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资助金额:$36.0万
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财政年份:2003
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负责人:DANIEL L ALTSCHULER
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依托单位:
Rap 1b as a mitogenic signal in thyroid
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批准号:7727055
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项目类别:
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资助金额:$36.36万
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财政年份:2003
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负责人:DANIEL L ALTSCHULER
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依托单位:
RAPLB AS AN EFFECTOR OF CAMP MEDIATED MITOGENIC ACTION
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依托单位:
海外基金