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血清素神经元发育:塑造分子和结构特征

Serotonin neuron development: shaping molecular and structural identities.

作者信息

Deneris Evan, Gaspar Patricia

机构信息

Department of Neurosciences, Case Western Reserve University School of Medicine, Cleveland, OH, USA.

Institut National de la Santé et de la Recherche Médicale (INSERM), UMR-S839, Paris, France.

出版信息

Wiley Interdiscip Rev Dev Biol. 2018 Jan;7(1). doi: 10.1002/wdev.301. Epub 2017 Oct 26.

Abstract

The continuing fascination with serotonin (5-hydroxytryptamine, 5-HT) as a nervous system chemical messenger began with its discovery in the brains of mammals in 1953. Among the many reasons for this decades-long interest is that the small numbers of neurons that make 5-HT influence the excitability of neural circuits in nearly every region of the brain and spinal cord. A further reason is that 5-HT dysfunction has been linked to a range of psychiatric and neurological disorders many of which have a neurodevelopmental component. This has led to intense interest in understanding 5-HT neuron development with the aim of determining whether early alterations in their generation lead to brain disease susceptibility. Here, we present an overview of the neuroanatomical organization of vertebrate 5-HT neurons, their neurogenesis, and prodigious axonal architectures, which enables the expansive reach of 5-HT neuromodulation in the central nervous system. We review recent findings that have revealed the molecular basis for the tremendous diversity of 5-HT neuron subtypes, the impact of environmental factors on 5-HT neuron development, and how 5-HT axons are topographically organized through disparate signaling pathways. We summarize studies of the gene regulatory networks that control the differentiation, maturation, and maintenance of 5-HT neurons. These studies show that the regulatory factors controlling acquisition of 5-HT-type transmitter identity continue to play critical roles in the functional maturation and the maintenance of 5-HT neurons. New insights are presented into how continuously expressed 5-HT regulatory factors control 5-HT neurons at different stages of life and how the regulatory networks themselves are maintained. WIREs Dev Biol 2018, 7:e301. doi: 10.1002/wdev.301 This article is categorized under: Nervous System Development > Vertebrates: General Principles Gene Expression and Transcriptional Hierarchies > Gene Networks and Genomics Gene Expression and Transcriptional Hierarchies > Cellular Differentiation Nervous System Development > Secondary: Vertebrates: Regional Development.

摘要

1953年,血清素(5-羟色胺,5-HT)在哺乳动物大脑中被发现,自此人们一直对其作为一种神经系统化学信使着迷。在长达数十年的关注背后,有诸多原因。其中之一是,产生5-HT的少数神经元几乎会影响大脑和脊髓每个区域神经回路的兴奋性。另一个原因是,5-HT功能障碍与一系列精神和神经疾病有关,其中许多疾病都有神经发育成分。这引发了人们对了解5-HT神经元发育的浓厚兴趣,目的是确定其生成过程中的早期改变是否会导致脑部疾病易感性。在此,我们概述脊椎动物5-HT神经元的神经解剖组织、它们的神经发生以及庞大的轴突结构,这些结构使得5-HT神经调节能够广泛作用于中枢神经系统。我们回顾了近期的研究发现,这些发现揭示了5-HT神经元亚型巨大多样性的分子基础、环境因素对5-HT神经元发育的影响,以及5-HT轴突如何通过不同的信号通路进行拓扑组织。我们总结了控制5-HT神经元分化、成熟和维持的基因调控网络的研究。这些研究表明,控制获得5-HT型递质身份的调控因子在5-HT神经元的功能成熟和维持中继续发挥关键作用。文中还介绍了持续表达的5-HT调控因子如何在生命的不同阶段控制5-HT神经元,以及调控网络自身是如何维持的新见解。WIREs发育生物学2018年,7:e301。doi:10.1002/wdev.301 本文分类如下:神经系统发育>脊椎动物:一般原理;基因表达与转录层次>基因网络与基因组学;基因表达与转录层次>细胞分化;神经系统发育>二级:脊椎动物:区域发育

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