Pathogenesis of TRPV4-related peripheral neuropathy
Pathogenesis of TRPV4-related peripheral neuropathy
批准号:
10453471
负责人:
Brett Andrew McCray
金额:
$19.98万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-09-15 至 2024-04-30
关键词:
AddressAffectAfferent NeuronsAgonistAxonAxonal NeuropathyBindingBiological ModelsCalciumCalcium SignalingCationsCell membraneCellsCharcot-Marie-Tooth DiseaseCultured CellsCytoskeletal ProteinsCytoskeletonDataDendritesDevelopmentDiseaseDrosophila genusDrug TargetingEnvironmentEpithelial CellsFoundationsFutureGenesGrowth ConesHealthHistologicImageImpairmentInheritedIon ChannelIon Channel GatingKnock-in MouseKnock-outLeadMaintenanceMapsMeasuresMediatingMediator of activation proteinMembraneModelingMorphogenesisMorphologyMotorMotor NeuronsMusMuscle WeaknessMutationN-terminalNerve DegenerationNeuritesNeuronsNeuropathyPathogenesisPathway interactionsPeripheral NervesPeripheral Nervous System DiseasesPermeabilityPharmaceutical PreparationsPharmacologyPhenotypePlayProcessProtein Binding DomainProteinsProteomicsRegulationRoleSensorySignal TransductionStimulusSurfaceTherapeuticTimeToxic effectTrainingTransducersVanilloidViralWorkbasecareercareer developmentcell immortalizationcombinatorialcytotoxicitydesigndisease-causing mutationexperimental studyextracellularflygenetic manipulationin vivoinsightknock-downmouse modelmutantnervous system disorderneuron developmentnoveloverexpressionprotein protein interactionreceptorrelease of sequestered calcium ion into cytoplasmrepairedsmall moleculetargeted treatmenttherapeutic targettool
中文摘要
项目总结/文摘
英文摘要
PROJECT SUMMARY/ABSTRACT
Charcot-Marie-Tooth (CMT) disease is the most common inherited neurologic disease worldwide and causes
peripheral nerve degeneration with resultant progressive sensory loss and muscle weakness. Despite
identification of over 80 causative genes, CMT lacks treatments due to incomplete understanding of disease
mechanisms and a lack of rational drug targets. Mutations in TRPV4 (transient receptor potential vanilloid), a
calcium-permeable non-selective ion channel, cause CMT type 2C (CMT2C). TRPV4 is unique in that it
represents the only membrane-expressed ion channel in CMT and thus a potential therapeutic target. TRPV4
is known to regulate cytoskeletal changes in epithelial cells, but a similar role in neurons has not been
established. As neuronal cytoskeletal changes are critical for neuronal development and maintenance and are
regulated by calcium signaling, defining the role of TRPV4 in modulating neuronal cytoskeleton has important
implications for the pathogenesis of CMT2C and potentially in other neurodegenerative conditions. Our
collective preliminary work in cells, primary neurons, and flies suggests that TRPV4 can promote neurite
outgrowth, but that this function is disrupted by neuropathy-causing mutations. We have also used unbiased
proteomics to identify TRPV4 interacting proteins, including syndapin-1 and RhoA, which have known roles in
regulating neuronal outgrowth. Specific Aim 1 will define how WT and mutant TRPV4 influence syndapin-1 and
RhoA-dependent cytoskeletal remodeling pathways and examine reciprocal regulation of TRPV4 ion channel
function and mutant toxicity. Specific Aim 2 will address the role of wild type and mutant TRPV4 in regulating
neuronal morphogenesis in primary sensory and motor neurons. In Specific Aim 3, we will use a Drosophila
model of TRPV4 neuropathy and our recently generated TRPV4 mutant knockin mice to interrogate the in vivo
effects of neuropathy mutations. We will also examine whether genetic manipulation of RhoA and syndapin or
pharmacologic manipulation of TRPV4 channel activity can alter neuronal phenotypes in flies. The experiments
in this proposal will define the normal function of TRPV4 in neuronal cytoskeletal remodeling and
morphogenesis, investigate specific pathogenetic mechanisms in TRPV4 neuropathy, and determine whether
TRPV4 can be therapeutically targeted in vivo. Together, these studies will provide important insights into the
role of TRPV4 in axonal health and disease and will inform future efforts to develop TRPV4-based therapeutic
strategies for CMT2C and perhaps other forms of axonal neuropathy.
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会议论文
Pathogenesis of TRPV4-related peripheral neuropathy
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批准号:9980503
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项目类别:
-
资助金额:$19.98万
-
财政年份:2018
-
负责人:Brett Andrew McCray
-
依托单位:
Pathogenesis of TRPV4-related peripheral neuropathy
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批准号:10226055
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项目类别:
-
资助金额:$19.98万
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财政年份:2018
-
负责人:Brett Andrew McCray
-
依托单位:
海外基金