Structural and Functional Studies of Teneurins: A bacterial toxin homolog in human
Structural and Functional Studies of Teneurins: A bacterial toxin homolog in human
批准号:
10001590
负责人:
Demet Arac-Ozkan
金额:
$32.4万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-09-01 至 2023-08-31
关键词:
AdhesionsAffinityAlternative SplicingAmino AcidsArchitectureBacterial ToxinsBindingBiochemicalBiologicalBiological AssayBiophysicsBrainC-terminalCell AdhesionCell Adhesion MoleculesCell AggregationCell physiologyCell surfaceCellsCellular biologyCommunicationComplementComplexCouplingCryoelectron MicroscopyCuesCyclic AMPDataDependenceDevelopmentDimerizationDiseaseElectron MicroscopyEmbryonic DevelopmentEncapsulatedExcitatory SynapseExhibitsFamilyG-Protein-Coupled ReceptorsGoalsHomodimerizationHomologous GeneHumanImmunoglobulin DomainInhibitory SynapseIntegral Membrane ProteinKnowledgeLaboratoriesLasersLigandsLinkMechanicsMediatingMembrane ProteinsMethodsMolecularMonitorMutagenesisMutateNegative StainingNervous system structureNeuronsOrganOrganismPhysiologicalPlayProtein FamilyProtein IsoformsProteinsRNA SplicingReportingResearchResolutionRoleRosaniline DyesSequence AnalysisSignal TransductionSiteStructureStructure-Activity RelationshipSurfaceSynapsesSystemTestingTissuesToxinVariantVisualizationalpha Toxinalpha-latrotoxin receptoranalytical ultracentrifugationanticancer researchaxon guidancebasecardiogenesiscrosslinkexperimental studyextracellularfollow-uphuman diseasein vivoinsightintercellular communicationinterdisciplinary approachlight scatteringmalignant neurologic neoplasmsmembermutantnervous system disorderneural circuitnovelnovel strategiesorganizational structureprotein functionrelating to nervous systemsuccesssynaptic functionsynaptogenesis
中文摘要
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英文摘要
Project Summary
The interplay between cellular adhesion and cellular signaling is essential for the development of all organs
such as the brain, and for the functioning of systems such as the nervous systems. Teneurins (TEN1-4) are a
poorly understood family that mediates intercellular communication. They have essential roles in embryonic
development and neural circuit-wiring; and are linked to numerous human diseases including neurological
disorders and cancers. TENs are type-II membrane proteins with large C-terminal extracellular regions (ECR)
that majorly exhibit no identifiable domains. The ECR mediates trans-cellular heterophilic interaction of TENs
with Latrophilins(LPHN1-3), a family of G-Protein Coupled Receptors; to regulate synapse function. The ECR
also mediates trans-cellular homophilic interaction of TENs with themselves to instruct neural circuit-wiring.
However, the molecular mechanisms underlying TEN action remains poorly understood majorly due to the
lack of structural information on the ECR. We recently laid the groundwork by determining the high-resolution
cryo-EM structure of the TEN2 ECR and revealed a surprising homology to bacterial Tc-toxins. We also
showed that an alternatively spliced insert acts as a switch to regulate LPHN binding and other TEN functions
such as synapse formation. The ultimate goal of the research proposed in this application is to understand the
mechanical details of various TEN functions that are mediated by its ECR. We propose three Specific Aims that
are based on the major unknowns in TEN function and a Follow-up Aim to perform structure/function
relationship studies: First, we aim to understand the molecular details of the TEN/LPHN interaction. Second,
we aim to understand the molecular determinants for the trans-homodimerization of TEN. Third, we aim to
reveal whether TEN functions via autoproteolysis similar to bacterial toxins. Then, we aim to use the
information from the first three aims to study TEN function in synapse formation assays. This research has a
multi-disciplinary approach where the structural and functional data performed in the PI's lab range from
electron microscopy, biophysical and biochemical methods, neuronal assays to cell-biology and is
complemented by the expertise provided or performed by the laboratories of close collaborators. The proposed
experiments will build on exciting results, including the very unusual TEN2 structure, surprising involvement
of alternative splicing in TEN function, key advances in the purification of all needed TEN fragments, and the
observation of proteolytic products. We expect that this research will provide critical insights into the
mechanistic details of TEN function, helping to establish novel principles on intercellular communication that
are vital for numerous cellular functions.
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Structural and Functional Studies of Cell-Adhesion Receptors
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批准号:10557708
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项目类别:
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资助金额:$28.25万
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财政年份:2023
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负责人:Demet Arac-Ozkan
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批准号:10334000
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批准号:10624758
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项目类别:
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资助金额:$84.89万
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财政年份:2022
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负责人:Demet Arac-Ozkan
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Structural and Functional Studies of Teneurins: A bacterial toxin homolog in human
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批准号:10533196
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项目类别:
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资助金额:$4.9万
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财政年份:2019
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负责人:Demet Arac-Ozkan
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Structural and Functional Studies of Teneurins: A bacterial toxin homolog in human
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财政年份:2019
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Structural and Functional Studies of Brain Angiogenesis Inhibitors (BAIs/ADGRBs)
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批准号:9813883
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资助金额:$16.2万
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财政年份:2019
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负责人:Demet Arac-Ozkan
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依托单位:
Structural and Functional Studies of Teneurins: A bacterial toxin homolog in human
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批准号:10237184
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项目类别:
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资助金额:$32.4万
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财政年份:2019
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负责人:Demet Arac-Ozkan
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依托单位:
Structural and Functional Studies of Teneurins: A bacterial toxin homolog in human
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批准号:10388672
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项目类别:
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资助金额:$14.5万
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财政年份:2019
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负责人:Demet Arac-Ozkan
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依托单位:
Structural and Functional Studies of Teneurins: A bacterial toxin homolog in human
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批准号:10474368
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项目类别:
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资助金额:$32.4万
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财政年份:2019
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负责人:Demet Arac-Ozkan
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依托单位:
Structural and Functional Studies of Adhesion GPCRs
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批准号:9376558
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项目类别:
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资助金额:$3.45万
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财政年份:2016
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负责人:Demet Arac-Ozkan
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依托单位:
Structural and Functional Studies of Adhesion GPCRs
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批准号:9159470
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项目类别:
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资助金额:$30.99万
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财政年份:2016
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负责人:Demet Arac-Ozkan
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依托单位:
海外基金