Role of BK Channel Interactome in Excessive Ethanol Drinking
Role of BK Channel Interactome in Excessive Ethanol Drinking
批准号:
8707289
负责人:
Candice Contet
金额:
$23.78万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-09-05 至 2016-08-31
关键词:
AddressAffectAlcohol abuseAlcohol consumptionAlcohol dependenceAlcoholic IntoxicationAlcoholsAmygdaloid structureAnimalsBehaviorBehavioralBiological AssayBrainBrain regionCalciumCandidate Disease GeneChronicCollaborationsDependenceDevelopmentEthanolEthanol dependenceFrequenciesGenesGenetic DeterminismHealthHeavy DrinkingIntoxicationInvestigationKnockout MiceMapsMeasuresMediatingMeta-AnalysisMolecularMolecular TargetNeuronsNucleus AccumbensPhenotypePhysiologyPopulationPotassiumPotassium ChannelPrefrontal CortexProteinsResearchResearch PersonnelResearch Project GrantsRoleSamplingSelf AdministrationShapesSynapsesSynaptic plasticityTestingTranscriptWithdrawalWorkalcohol effectalcohol exposurealcoholism therapycostdrinkingin vivoinnovationinsightinterestlarge-conductance calcium-activated potassium channelsmouse modelneurotransmissionneurotransmitter releasenovelpreferenceprotein expressionresearch studyresponse
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Alcohol abuse and dependence affect an estimated 8.5% of the U.S. population and are responsible for substantial health and societal costs. The large conductance calcium-activated potassium (BK) channel, together with more than 20% of the proteins known to interact with BK a subunit, have been identified by the INIA-West consortium as potential genetic determinants of ethanol preference. In the present proposal, we hypothesize that perturbation of BK channel interaction network by alcohol in relevant brain regions contributes to excessive drinking. We will focus our investigation on the neurocircuitry subtending the motivational effects of ethanol (nucleus accumbens, amygdala and prefrontal cortex). We further hypothesize that ethanol-induced reorganization of the BK channel interactome mediates changes in neurotransmission and synaptic plasticity observed in ethanol-dependent animals. To test these hypotheses, we will quantify and manipulate expression levels of key interaction partners of the BK a subunit. The first Specific Aim is to characterize the phenotype of knockout mice deficient for either of the two neuronal auxiliary subunits of the BK channel. We will use assays of ethanol intoxication, tolerance and withdrawal, as well as paradigms of voluntary drinking leading to moderate or excessive ethanol intake. The second Specific Aim is to map the expression of known BK interaction partners in the nucleus accumbens, amygdala and prefrontal cortex, and assess how excessive ethanol exposure alters their protein levels. An innovative protein assay will be exploited for the simultaneous quantification of 19 BK channel subunits and interaction partners in brain samples. We will then assess how virally-mediated local silencing of the most promising genes affects ethanol self-administration. In a third Specific Aim, a similar functional approach will be used to probe the contribution of these genes to GABAergic neurotransmission in the amygdala and synaptic plasticity in the nucleus accumbens, in collaboration with INIA-West investigators. The proposed experiments are expected to uncover the contribution of BK channel interactome to ethanol self-administration and potentially pinpoint novel molecular targets for the treatment of alcoholism.
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依托单位:
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依托单位:
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财政年份:--
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依托单位:
Viral Vector Core
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资助金额:$13.71万
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财政年份:--
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依托单位:
Viral Vector Core
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Viral Vector Core
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项目类别:
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资助金额:$13.18万
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财政年份:--
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依托单位:
Viral Vector Core
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资助金额:$12.84万
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财政年份:--
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依托单位:
海外基金