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The origin of dopaminergic systems in chordate brains: insights from amphioxus.脊索动物脑中多巴胺能系统的起源:来自文昌鱼的见解。
Int J Dev Biol. 2017;61(10-11-12):749-761. doi: 10.1387/ijdb.170153sc.
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Roles of Retinoic Acid Signaling in Shaping the Neuronal Architecture of the Developing Amphioxus Nervous System.视黄酸信号在塑造文昌鱼发育神经系统的神经元结构中的作用。
Mol Neurobiol. 2018 Jun;55(6):5210-5229. doi: 10.1007/s12035-017-0727-8. Epub 2017 Sep 5.
3
Nodal/Activin Pathway is a Conserved Neural Induction Signal in Chordates.Nodal/激活素信号通路是脊索动物中保守的神经诱导信号。
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Molecular regionalization of the developing amphioxus neural tube challenges major partitions of the vertebrate brain.发育中文昌鱼神经管的分子区域化对脊椎动物脑的主要分区提出了挑战。
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New Insights Into the Roles of Retinoic Acid Signaling in Nervous System Development and the Establishment of Neurotransmitter Systems.视黄酸信号在神经系统发育和神经递质系统建立中的作用新见解。
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Lineage-specific duplication of amphioxus retinoic acid degrading enzymes (CYP26) resulted in sub-functionalization of patterning and homeostatic roles.文昌鱼视黄酸降解酶(CYP26)的谱系特异性复制导致了其在模式形成和稳态维持功能上的亚功能化。
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Gain-of-Function Mutations in RARB Cause Intellectual Disability with Progressive Motor Impairment.RARB基因的功能获得性突变导致伴有进行性运动障碍的智力残疾。
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视黄酸信号转导与头索动物文昌鱼发育周围神经系统神经生成龛调控

Retinoic acid signaling and neurogenic niche regulation in the developing peripheral nervous system of the cephalochordate amphioxus.

机构信息

Laboratoire de Biologie du Développement de Villefranche-sur-Mer, Observatoire Océanologique de Villefranche-sur-Mer, Sorbonne Universités, UPMC Université Paris 06, CNRS, 181 Chemin du Lazaret, 06230, Villefranche-sur-Mer, France.

Department of Earth, Environment and Life Sciences (Dipartimento di Scienze della Terra dell'Ambiente e della Vita, DISTAV), University of Genoa, Viale Benedetto XV 5, 16132, Genoa, Italy.

出版信息

Cell Mol Life Sci. 2018 Jul;75(13):2407-2429. doi: 10.1007/s00018-017-2734-3. Epub 2018 Jan 31.

DOI:10.1007/s00018-017-2734-3
PMID:29387904
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11105557/
Abstract

The retinoic acid (RA) signaling pathway regulates axial patterning and neurogenesis in the developing central nervous system (CNS) of chordates, but little is known about its roles during peripheral nervous system (PNS) formation and about how these roles might have evolved. This study assesses the requirement of RA signaling for establishing a functional PNS in the cephalochordate amphioxus, the best available stand-in for the ancestral chordate condition. Pharmacological manipulation of RA signaling levels during embryogenesis reduces the ability of amphioxus larvae to respond to sensory stimulation and alters the number and distribution of ectodermal sensory neurons (ESNs) in a stage- and context-dependent manner. Using gene expression assays combined with immunohistochemistry, we show that this is because RA signaling specifically acts on a small population of soxb1c-expressing ESN progenitors, which form a neurogenic niche in the trunk ectoderm, to modulate ESN production during elongation of the larval body. Our findings reveal an important role for RA signaling in regulating neurogenic niche activity in the larval amphioxus PNS. Although only few studies have addressed this issue so far, comparable RA signaling functions have been reported for neurogenic niches in the CNS and in certain neurogenic placode derivatives of vertebrates. Accordingly, the here-described mechanism is likely a conserved feature of chordate embryonic and adult neural development.

摘要

视黄酸(RA)信号通路调节脊椎动物中枢神经系统(CNS)的轴向模式和神经发生,但对于其在外周神经系统(PNS)形成中的作用以及这些作用如何进化知之甚少。本研究评估了 RA 信号通路在头索动物文昌鱼建立功能性 PNS 中的需求,文昌鱼是最接近祖先脊索动物状态的可用替代品。胚胎发生期间 RA 信号通路水平的药理学操纵以阶段和上下文依赖的方式降低了文昌鱼幼虫对感觉刺激的反应能力,并改变了外胚层感觉神经元(ESN)的数量和分布。通过使用基因表达测定结合免疫组织化学,我们表明这是因为 RA 信号通路特异性作用于一小群表达 soxb1c 的 ESN 祖细胞,这些细胞在外胚层的躯干中形成神经发生龛,在幼虫身体伸长过程中调节 ESN 的产生。我们的研究结果揭示了 RA 信号通路在调节幼虫文昌鱼 PNS 神经发生龛活性中的重要作用。尽管迄今为止只有少数研究探讨了这个问题,但已经报道了类似的 RA 信号通路功能,用于 CNS 中的神经发生龛和脊椎动物某些神经嵴衍生的神经嵴衍生物。因此,所描述的机制很可能是脊索动物胚胎和成年神经发育的保守特征。