Mechanisms for 5-HTT control of PPI and perseverative behavior using mouse models
Mechanisms for 5-HTT control of PPI and perseverative behavior using mouse models
批准号:
7186087
负责人:
STEPHANIE C DULAWA
金额:
$33.09万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-03-22 至 2012-02-29
关键词:
AcuteAgonistAllelesAnimal ModelAntidepressive AgentsAutistic DisorderBehaviorBehavioralBehavioral GeneticsBindingBrain regionChronicClassClomipramineCodeCognitiveCouplingDesipramineDiseaseDisruptionExhibitsFluoxetineGTP gamma SGenesGeneticGenetic ModelsHumanHypersensitivityInfusion proceduresKnock-outKnockout MiceLeadLinkLocalizedMeasuresMissense MutationMoclobemideModelingMonoamine Oxidase InhibitorsMotorMouse StrainsMusMutationNorepinephrineObsessive-Compulsive DisorderPopulationProtein OverexpressionPsyche structureReceptor ActivationReflex actionRegulationResearch PersonnelSelective Serotonin Reuptake InhibitorSensorySerotoninSerotonin Receptor 5-HT1BSpecificityStimulusTechniquesTestingTransgenic MiceTransgenic OrganismsWorkgain of functiongain of function mutationinhibitor/antagonistinsightmouse modelmutantneuromechanismnovelprepulse inhibitionpresynapticpreventpromoterreceptorreceptor bindingreceptor expressionresponsereuptakeserotonin transporteruptake
中文摘要
描述(由申请人提供):我们建议使用行为和遗传小鼠模型来鉴定5-羟色胺转运蛋白(5-HTT)功能调节感觉运动门控缺陷和持续行为的神经机制。感觉运动门控是一种神经机制,它过滤过多的感觉、认知和运动信息,允许心理和行为整合。前脉冲抑制(PPI)是惊吓可塑性的一种形式,提供了感觉运动门控的操作措施。最近的研究结果表明,5-HTT的功能获得性突变和5-HT 1DP(与小鼠5-HT 1B同源)受体的超敏反应与两种以PPI缺陷和持续行为为特征的疾病有关:强迫症(OCD)和自闭症。只有有效阻断血清素再摄取的抗抑郁药物才能有效治疗这些疾病。我们最近在小鼠中的发现已经确定了5-HTT和5-HT 1B受体在调节PPI和持续行为中的功能性相互作用。我们发现5-HTT基因敲除小鼠不存在急性5-HT 1B激动剂激发诱导的PPI缺陷和持续行为。我们还发现,5-HT 1B激动剂诱导的行为缺陷是不存在的小鼠长期治疗,但不是亚慢性,与选择性5-羟色胺再摄取抑制剂氟西汀。因此,我们假设,减少5-HTT功能,遗传或免疫,防止PPI赤字和持久性行为诱导的5-HT 1B受体激活脱敏这些受体。我们还假设,增加5-HTT功能,遗传或免疫,将加剧行为缺陷诱导的5-HT 1B受体激活这些受体的敏感性。在这里,我们建议确定5-HTT和5-HT 1B受体相互作用,以调节这些行为的机制。首先,我们将通过比较不同类型的抗抑郁药逆转这些作用的能力来检验以下假设:需要有效阻断5-HTT来预防5-HT 1B激动剂诱导的行为缺陷。其次,我们将评估5-HT 1B受体的表达和功能耦合,以定位抗抑郁药治疗使5-HT 1B受体脱敏的脑区。第三,我们将产生两种具有增加的5-HTT功能的诱导型转基因小鼠品系。一个品系将过表达小鼠5-HTT,以评估5-HTT可用性增加的影响,这可能模拟最近与OCD相关的特定5-HTT基因连锁多态性区域(5-HTTLPR)等位基因的后果。另一种菌株将表达含有不常见突变Ne 425 Val的人5-HTT,该突变使5-HTT具有组成性活性,并且最近与强迫症和自闭症有关。我们假设这两种小鼠品系都将表现出PPI缺陷和持续行为,以及对5-HT 1B激动剂的行为反应增加。我们独特的方法可能会导致新的动物模型的感觉运动门控缺陷和强迫症和自闭症的持续行为。
英文摘要
DESCRIPTION (provided by applicant): We propose to use behavioral and genetic mouse models to identify the neural mechanisms by which serotonin transporter (5-HTT) function modulates sensorimotor gating deficits and perseverative behaviors. Sensorimotor gating is a neural mechanism that filters excessive sensory, cognitive, and motor information, permitting mental and behavioral integration. Prepulse inhibition (PPI) is a form of startle plasticity that provides an operational measure of sensorimotor gating. Recent findings have implicated gain-of-function mutations in 5-HTT, and hypersensitivity of 5-HT1DP (homologous to mouse 5-HT1B) receptors, in two disorders characterized by deficient PPI and perseverative behaviors: obsessive-compulsive disorder (OCD) and autistic disorders. Only antidepressant drugs that potently block the reuptake of serotonin provide effective treatment for these disorders. Our recent findings in mice have identified a functional interaction between 5-HTT and 5-HT1B receptors in modulating PPI and perseverative behaviors. We found that the PPI deficits and perseverative behaviors induced by acute 5-HT1B agonist challenge are absent in 5-HTT knockout mice. We also found that the behavioral deficits induced by 5-HT1B agonists are absent in mice treated chronically, but not subchronically, with the selective serotonin reuptake inhibitor fluoxetine. Thus, we hypothesize that reducing 5-HTT function, genetically or pharmacologically, prevents the PPI deficits and perseverative behaviors induced by 5-HT1B receptor activation by desensitizing these receptors. We also hypothesize that increasing 5-HTT function, genetically or pharmacologically, will exacerbate the behavioral deficits induced by 5-HT1B receptor activation by sensitizing these receptors. Here, we propose to identify the mechanisms by which 5-HTT and 5-HT1B receptors interact to modulate these behaviors. First, we will test the hypothesis that potent blockade of 5-HTT is required to prevent 5-HT1B agonist-induced behavioral deficits by comparing the ability of different classes of antidepressants to reverse these effects. Second, we will assess 5-HT1B receptor expression and functional coupling to localize the brain regions in which 5-HT1B receptors are desensitized by antidepressant treatments. Third, we will generate two inducible transgenic mouse strains with increased 5-HTT function. One strain will overexpress mouse 5-HTT to evaluate the effects of increased 5-HTT availability, which may model the consequences of specific 5-HTT gene-linked polymorphic region (5-HTTLPR) alleles recently linked to OCD. The other strain will express human 5-HTT containing an uncommon mutation, Ne425Val, which renders 5-HTT constitutively active and was recently linked to OCD and autism. We hypothesize that both mouse strains will exhibit PPI deficits and perseverative behaviors, and increased behavioral responses to 5-HT1B agonists. Our unique approach could lead to novel animal models of the sensorimotor gating deficits and perseverative behaviors in OCD and autism.
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