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活性依赖性调节黑质神经元中的多巴胺表型。

Activity-dependent regulation of the dopamine phenotype in substantia nigra neurons.

机构信息

Florey Neuroscience Institutes, Melbourne Brain Centre, The University of Melbourne, Parkville, Victoria, Australia.

出版信息

J Neurochem. 2012 May;121(4):497-515. doi: 10.1111/j.1471-4159.2012.07703.x. Epub 2012 Mar 14.

Abstract

Degeneration of dopamine (DA) neurons in the substantia nigra pars compacta (SNc) causes the motor symptoms of Parkinson's disease. The development of cell-replacement therapies for Parkinson's disease motor symptoms is hampered by poor acquisition and retention of the DA phenotype by endogenous and transplanted neurons. Factors which regulate the DA phenotype in the adult SNc are, therefore, keenly sought. Transcription of the rate-limiting enzyme in DA synthesis, tyrosine hydroxylase, and possibly other DA genes, is known to be regulated by changes in membrane potential and intracellular Ca²⁺. Furthermore, emerging evidence indicates DA gene transcription is sensitive to fast membrane potential changes and intracellular Ca²⁺ transients, that is, those associated with normal rates and patterns of neuronal activity. In other words, the DA phenotype is activity-dependent. In this review, we highlight the importance of spatiotemporal Ca²⁺ dynamics for regulating gene expression in cells, and the possible role of fast Ca²⁺ dynamics associated with normal rates and patterns of neuronal activity. We review evidence supporting activity- and Ca²⁺-dependent regulation of the DA phenotype in cells, including SNc neurons, as well as knowledge about the molecular pathways intervening between intracellular Ca²⁺ and TH gene expression. We describe the electrophysiology of SNc DA neurons, emphasizing features that may regulate DA gene expression. We conclude by bringing together this information in a model of how neuronal activity might regulate the DA phenotype in SNc neurons.

摘要

黑质致密部(SNc)中的多巴胺(DA)神经元的退化导致帕金森病的运动症状。由于内源性和移植神经元对 DA 表型的获取和保留不佳,帕金森病运动症状的细胞替代疗法的发展受到阻碍。因此,迫切需要寻找调节成年 SNc 中 DA 表型的因素。已知多巴胺合成的限速酶酪氨酸羟化酶的转录,以及其他可能的 DA 基因的转录,受到膜电位和细胞内 Ca²⁺变化的调节。此外,新出现的证据表明,DA 基因转录对快速膜电位变化和细胞内 Ca²⁺瞬变敏感,即与正常神经元活动速率和模式相关的那些。换句话说,DA 表型是依赖于活动的。在这篇综述中,我们强调了时空 Ca²⁺动力学对细胞中基因表达的调节的重要性,以及与正常神经元活动速率和模式相关的快速 Ca²⁺动力学的可能作用。我们回顾了支持细胞中 DA 表型的活动和 Ca²⁺依赖性调节的证据,包括 SNc 神经元,以及关于细胞内 Ca²⁺和 TH 基因表达之间干预的分子途径的知识。我们描述了 SNc DA 神经元的电生理学,强调了可能调节 DA 基因表达的特征。我们最后在一个模型中汇集了这些信息,说明了神经元活动如何调节 SNc 神经元中的 DA 表型。

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