Association of the endosomal sorting processes cargo selection and membrane tubulation with human reward system reactivity.

IF 3.7 3区 医学 Q1 CLINICAL NEUROLOGY
Jens Treutlein, Bernd Krämer, Monika Rex-Haffner, Swapnil Awasthi, Stephan Ripke, Elisabeth Binder, Oliver Gruber
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Abstract

Dysfunction of the dopaminergic reward system has been implicated in the pathophysiology of several neuropsychiatric disorders. The endosomal network encompasses important processes related to neurotransmission in dopamine neurons, e.g., endocytosis, sorting, recycling and degradation of receptors. We investigated whether genetic variation influencing the endosomal sorting machinery, in particular cargo selection and membrane tubulation, may impact on the activation strength in key regions of the mesolimbic reward system, i.e. the ventral tegmental area (VTA) and the nucleus accumbens (NAcc). To test our hypothesis, VTA and NAcc responses to conditioned reward stimuli were investigated using the 'desire-reason-dilemma' paradigm during functional magnetic resonance imaging in humans. Association of these neural responses with a set of genetic variants related to endosomal sorting processes (SNX1, SNX6, WASHC2C, WASHC3, WASHC4, DNAJC13) were tested in two independent cohorts (N = 182; N = 214). In the first cohort, the gene set was associated with both VTA and NAcc responses to conditioned reward stimuli [empirical P-values: R-VTA: 0.0036; R-NAcc: 0.0016; L-NAcc: 0.0094]. At the level of the gene set, the effect in the R-VTA could be replicated in the second cohort [empirical P-value: R-VTA: 0.0443]. For the NAcc, an additional exploratory analysis of a patient-only subcohort of the first cohort (N = 64) suggested that the gene set may express its effect in this brain region predominantly in patients. These findings provide first evidence that the endosomal sorting processes cargo selection and membrane tubulation may influence neural responses of the reward system to conditioned stimuli.

内体分选过程货物选择和膜管与人类奖励系统反应的关联。
多巴胺能奖励系统的功能障碍与几种神经精神疾病的病理生理学有关。内体网络包括多巴胺神经元中与神经传递相关的重要过程,如内吞作用、分类、再循环和受体降解。我们研究了遗传变异是否会影响内体分选机制,特别是货物选择和膜管化,从而影响中脑边缘奖励系统的关键区域,即腹侧被盖区(VTA)和伏隔核(NAcc)的激活强度。为了验证我们的假设,我们在人类功能磁共振成像期间使用“欲望-理性-困境”范式研究了VTA和NAcc对条件奖励刺激的反应。在两个独立的队列(N = 182; N = 214)中测试了这些神经反应与内体分选过程相关的一组遗传变异(SNX1, SNX6, WASHC2C, WASHC3, WASHC4, DNAJC13)的关联。在第一个队列中,该基因集与VTA和NAcc对条件奖励刺激的反应相关[经验p值:R-VTA: 0.0036;R-NAcc: 0.0016;L-NAcc: 0.0094)。在基因集水平上,R-VTA中的效果可以在第二组队列中得到复制[经验p值:R-VTA: 0.0443]。对于NAcc,另一项对第一队列(N = 64)的患者亚队列的探索性分析表明,该基因集可能主要在患者中表达其在该大脑区域的作用。这些发现提供了第一个证据,表明内体分选过程货物选择和膜管化可能影响奖励系统对条件刺激的神经反应。
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来源期刊
CiteScore
8.80
自引率
4.30%
发文量
154
审稿时长
6-12 weeks
期刊介绍: The original papers published in the European Archives of Psychiatry and Clinical Neuroscience deal with all aspects of psychiatry and related clinical neuroscience. Clinical psychiatry, psychopathology, epidemiology as well as brain imaging, neuropathological, neurophysiological, neurochemical and moleculargenetic studies of psychiatric disorders are among the topics covered. Thus both the clinician and the neuroscientist are provided with a handy source of information on important scientific developments.
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