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首页> 外文期刊>Journal of Central Nervous System Disease >Abnormalities of Dopamine D3 Receptor Signaling in the Diseased Brain
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Abnormalities of Dopamine D3 Receptor Signaling in the Diseased Brain

机译:患病脑中多巴胺D3受体信号传导的异常

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Dopamine D3 receptors (D3R) modulate neuronal activity in several brain regions including cortex, striatum, cerebellum, and hippocampus. A growing body of evidence suggests that aberrant D3R signaling contributes to multiple brain diseases, such as Parkinson’s disease, essential tremor, schizophrenia, and addiction. In line with these findings, D3R has emerged as a potential target in the treatment of neurological disorders. However, the mechanisms underlying neuronal D3R signaling are poorly understood, either in healthy or diseased brain. Here, I review the molecular mechanisms involved in D3R signaling via monomeric D3R and heteromeric receptor complexes (e.g., D3R-D1R, D3R-D2R, D3R-A2aR, and D3R-D3nf). I focus on D3R signaling pathways that, according to recent reports, contribute to pathological brain states. In particular, I describe evidence on both quantitative (e.g., increased number or affinity) and qualitative (e.g., switched signaling) changes in D3R that has been associated with brain dysfunction. I conclude with a description of basic mechanisms that modulate D3R signaling such as desensitization, as disruption of these mechanisms may underlie pathological changes in D3R signaling. Because several lines of evidence support the idea that imbalances in D3R signaling alter neural function, a better understanding of downstream D3R pathways is likely to reveal novel therapeutic strategies toward dopamine-related brain disorders.
机译:多巴胺D3受体(D3R)调节几种脑区域的神经元活性,包括皮质,纹状体,小脑和海马。越来越多的证据表明,异常的D3R信号传导有助于多种脑病,例如帕金森病,基本震颤,精神分裂症和成瘾。根据这些发现,D3R已成为治疗神经系统疾病的潜在靶标。然而,神经元D3R信号传导的机制差不多理解,无论是健康还是患病的脑。这里,通过单体D3R和异统受体复合物(例如,D3R-D1R,D3R-D2R,D3R-A2AR和D3R-D3NF)查看参与D3R信号传导的分子机制。我专注于D3R信令路径,根据最近的报告,有助于病理脑状态。特别地,我描述了与大脑功能障碍相关的D3R中定量(例如,增加数或亲和力)和定性(例如,切换信令)的定性(例如,切换信令)的证据。我得出结论,描述了调节D3R信令的基本机制,例如脱敏,因为这些机制的破坏可能是D3R信号传导中的病理变化。因为几条证据支持了D3R信号传导的不平衡的想法,因为对D3R途径的更好理解,可能会揭示与多巴胺相关的脑疾病的新疗效策略。

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