首页> 美国卫生研究院文献>The Journal of Neuroscience >Compromised Dopaminergic Encoding of Reward Accompanying Suppressed Willingness to Overcome High Effort Costs Is a Prominent Prodromal Characteristic of the Q175 Mouse Model of Huntingtons Disease
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Compromised Dopaminergic Encoding of Reward Accompanying Suppressed Willingness to Overcome High Effort Costs Is a Prominent Prodromal Characteristic of the Q175 Mouse Model of Huntingtons Disease

机译:奖励伴有抑制克服的高昂努力成本的奖励受损的多巴胺能编码是亨廷顿氏病Q175小鼠模型的突出前驱特征

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摘要

Huntington's disease (HD) is a heritable neurodegenerative disorder caused by expansion of CAG (glutamine) repeats in the HTT gene. A prodromal stage characterized by psychiatric disturbances normally precedes primary motor symptoms and suppressed motivation represents one of the earliest and most common psychiatric symptoms. Although dopamine in the nucleus accumbens (NAc) critically regulates motivation and altered dopamine signaling is implicated in HD, the nature of dopaminergic deficits and contribution to symptoms in HD is poorly understood. We therefore tested whether altered NAc dopamine release accompanies motivational deficits in the Q175 knock-in HD mouse model. Q175 mice express a CAG expansion of the human mutant huntingtin allele in the native mouse genome and gradually manifest symptoms late in life, closely mimicking the genotypic context and disease progression in human HD. Sub-second extracellular dopamine release dynamics were monitored using fast-scan cyclic voltammetry, whereas motivation was assessed using a progressive ratio reinforcement schedule. As the response ratio (lever presses per reward) escalated, Q175 mice exerted less effort to earn fewer rewards versus wild-type (WT). Moreover, dopamine released at reward delivery dynamically encoded increasing reward cost in WT but not Q175 mice. Deficits were specific to situations of high effortful demand as no difference was observed in locomotion, free feeding, hedonic processing, or reward seeking when the response requirement was low. This compromised dopaminergic encoding of reward delivery coincident with suppressed motivation to work for reward in Q175 mice provides novel, neurobiological insight into an established and clinically relevant endophenotype of prodromal HD.>SIGNIFICANCE STATEMENT Psychiatric impairments in Huntington's disease (HD) typically manifest early in disease progression, before motor deficits. However, the neurobiological factors contributing to psychiatric symptoms are poorly understood. We used a mouse HD model and assessed whether impaired dopamine release in the nucleus accumbens (NAc), a brain region critical to goal-directed behaviors, accompanies motivational deficits, one of the most common early HD symptoms. HD mice exhibited blunted motivation to work for food reward coincident with diminished dopamine release to reward receipt. Motivational and NAc dopaminergic deficits were not associated with gross motor deficits or impaired food seeking when effortful demands were low. This work identifies a specific prodromal HD phenotype associated with a prominent and previously unidentified neurobiological impairment.
机译:亨廷顿舞蹈病(HD)是由HTT基因中CAG(谷氨酰胺)重复序列的扩增引起的遗传性神经退行性疾病。以精神障碍为特征的前驱阶段通常先于原发性运动症状出现,而动机受抑制则是最早,最常见的精神症状之一。尽管伏隔核(NAc)中的多巴胺能严格调节动力,而多巴胺信号通路的改变与HD有关,但对多巴胺能缺陷的性质和对HD症状的贡献知之甚少。因此,我们测试了Q175敲入HD小鼠模型中NAc多巴胺释放的改变是否伴随着动机缺陷。 Q175小鼠在天然小鼠基因组中表达人类突变型亨廷顿等位基因的CAG扩增,并在生命后期逐渐表现出症状,与人类HD的基因型背景和疾病进展密切相似。亚秒级细胞外多巴胺释放动力学是使用快速扫描循环伏安法进行监测的,而动力是使用渐进比例增强时间表进行评估的。随着应答率(每次奖励的杠杆按下次数)增加,与野生型(WT)相比,Q175小鼠花费更少的精力来获得更少的奖励。而且,在奖励传递中释放的多巴胺能动态编码野生型小鼠的奖励成本增加,而Q175小鼠却没有。缺乏是特定于高努力需求的情况,因为在响应要求较低时,运动,自由进食,享乐主义处理或寻求奖励方面没有发现差异。这种奖励传递的多巴胺能编码受损,同时抑制了Q175小鼠争取奖励的动机,为前驱性HD的既定和临床相关内表型提供了新颖的,神经生物学的见解。>意义声明亨廷顿舞蹈病(HD)的精神障碍)通常表现在疾病进展的早期,运动缺陷之前。但是,导致精神症状的神经生物学因素知之甚少。我们使用了小鼠高清模型并评估了伏隔核(NAc)(对目标定向行为至关重要的大脑区域)中多巴胺释放受损是否伴随着动机缺陷,这是最常见的早期高清症状之一。 HD小鼠表现出为获得食物奖励而工作的动力减弱,而多巴胺释放减少以奖励接收。动机和NAc多巴胺能缺乏与努力需求低时的总运动缺陷或寻求食物受损无关。这项工作确定特定的前驱高清表型与突出的和以前未确定的神经生物学损伤相关。

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