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dlx 基因在成年斑马鱼正常和再生脑中的表达。

Expression of dlx genes in the normal and regenerating brain of adult zebrafish.

机构信息

Department of Biology, University of Ottawa, Ottawa, Ontario, Canada.

Faculté des Sciences Fondamentales et Appliquées, Université de Poitiers, Poitiers, France.

出版信息

PLoS One. 2020 Jun 4;15(6):e0229549. doi: 10.1371/journal.pone.0229549. eCollection 2020.

Abstract

Dysfunctions in the GABAergic system lead to various pathological conditions and impaired inhibitory function is one of the causes behind neuropathies characterized by neuronal hyper excitability. The Dlx homeobox genes are involved in the development of nervous system, neural crest, branchial arches and developing appendages. Dlx genes also take part in neuronal migration and differentiation during development, more precisely, in the migration and differentiation of GABAergic neurons. Functional analysis of dlx genes has mainly been carried out in developing zebrafish embryos and larvae, however information regarding the expression and roles of these genes in the adult zebrafish brain is still lacking. The extensive neurogenesis that takes place in the adult zebrafish brain, makes them a good model for the visualization of mechanisms involving dlx genes during adulthood in physiological conditions and during regeneration of the nervous system. We have identified the adult brain regions where transcripts of dlx1a, dlx2a, dlx5a and dlx6a genes are normally found and have confirmed that within telencephalic domains, there is high overlapping expression of the four dlx paralogs with a marker for GABAergic neurons. Co-localization analyses carried with the Tg(dlx6a-1.4kbdlx5a/dlx6a:GFP) reporter line have also shown that in some areas of the diencephalon, cells expressing the dlx5a/6a bigene may have a neural stem cell identity. Furthermore, investigations in a response to stab wound lesions, have demonstrated a possible participation of the dlx5a/6a bigene, most likely of dlx5a, during regeneration of the adult zebrafish brain. These observations suggest a possible participation of dlx-expressing cells during brain regeneration in adult zebrafish and also provide information on the role of dlx genes under normal physiological conditions in adults.

摘要

GABA 能系统功能障碍导致各种病理状况,而抑制功能受损是神经元过度兴奋的神经病变的原因之一。Dlx 同源盒基因参与神经系统、神经嵴、鳃弓和发育附属物的发育。Dlx 基因还参与发育过程中的神经元迁移和分化,更确切地说,参与 GABA 能神经元的迁移和分化。dlx 基因的功能分析主要在发育中的斑马鱼胚胎和幼虫中进行,然而,关于这些基因在成年斑马鱼大脑中的表达和作用的信息仍然缺乏。成年斑马鱼大脑中广泛发生的神经发生,使它们成为可视化成年生理条件下和神经系统再生过程中涉及 dlx 基因的机制的良好模型。我们已经确定了 dlx1a、dlx2a、dlx5a 和 dlx6a 基因转录本在成年斑马鱼大脑中正常存在的脑区,并证实了在端脑区域,这四个 dlx 同源基因与 GABA 能神经元的标志物有高度重叠的表达。与 Tg(dlx6a-1.4kbdlx5a/dlx6a:GFP)报告系进行的共定位分析也表明,在间脑的一些区域,表达 dlx5a/6a 双基因的细胞可能具有神经干细胞特性。此外,对刺伤损伤的研究表明,dlx5a/6a 双基因可能参与成年斑马鱼大脑的再生,最有可能的是 dlx5a。这些观察结果表明,dlx 表达细胞可能在成年斑马鱼大脑再生过程中发挥作用,并提供了 dlx 基因在成年正常生理条件下作用的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac64/7272068/8b39aadcffcb/pone.0229549.g001.jpg

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