首页> 外文期刊>The Journal of Comparative Neurology >In vivo expression of Nurr1/Nr4a2a in developing retinal amacrine subtypes in zebrafish Tg(nr4a2a:eGFP) transgenics
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In vivo expression of Nurr1/Nr4a2a in developing retinal amacrine subtypes in zebrafish Tg(nr4a2a:eGFP) transgenics

机译:在斑马鱼TG(NR4A2A:EGFP)转基因中显影视网膜氨基亚型中Nurr1 / NR4a2a的体内表达

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The Nuclear receptor subfamily 4 group A member 2 (Nr4a2) is crucial for the formation or maintenance of dopaminergic neurons in the central nervous system including the retina, where dopaminergic amacrine cells contribute to visual function. Little is known about which cells express Nr4a2 at which developmental stage. Furthermore, whether Nr4a2 functions in combination with other genes is poorly understood. Thus, we generated a novel transgenic to visualize Nr4a2 expression in vivo during zebrafish retinogenesis. A 4.1kb fragment of the nr4a2a promoter was used to drive green fluorescent protein expression in this Tg(nr4a2a:eGFP) line. In situ hybridization showed that transgene expression follows endogenous RNA expression at a cellular level. Temporal expression and lineages were quantified using in vivo time-lapse imaging in embryos. Nr4a2 expressing retinal subtypes were characterized immunohistochemically. Nr4a2a:eGFP labeled multiple neuron subtypes including 24.5% of all amacrine interneurons. Nr4a2a:eGFP labels all tyrosine hydroxylase labeled dopaminergic amacrine cells, and other nondopaminergic GABAergic amacrine populations. Nr4a2a:eGFP is confined to a specific progenitor lineage identified by sequential expression of the bhlh transcription factor Atonal7 (Atoh7) and Pancreas transcription factor 1a (Ptf1a), and labels postmitotic postmigratory amacrine cells. Thus, developmental Nr4a2a expression indicates a role during late differentiation of specific amacrine interneurons. Tg(nr4a2a:eGFP) is an early marker of distinct neurons including dopaminergic amacrine cells. It can be utilized to assess consequences of gene manipulations and understand whether Nr4a2 only carries out its role in the presence of specific coexpressed genes. This will allow Nr4a2 use to be refined for regenerative approaches.
机译:核受体亚家族4组构件2(NR4A2)对于在包括视网膜的中枢神经系统中的多巴胺能神经元的形成或维持的关键,其中多巴胺能氨基细胞有助于视觉功能。众所周知,众所周知的细胞表达了发育阶段的NR4A2。此外,NR4A2是否与其他基因组合的功能较差地理解。因此,我们在斑马鱼视藻酸盐发生过程中产生了一种新的转基因以在体内显示NR4A2表达。使用4.1KB的NR4A2A启动子片段用于在该TG(NR4A2A:EGFP)线中促进绿色荧光蛋白表达。原位杂交表明,转基因表达在细胞水平下遵循内源性RNA表达。使用胚胎中的体内延时成像量化时间表达和谱系。表达视网膜亚型的NR4A2的特征是免疫组织化学。 NR4A2A:EGFP标记多个神经元亚型,包括所有氨基氧胞间的24.5%。 NR4A2A:EGFP标记所有酪氨酸羟化酶标记为多巴胺能氨基细胞,以及其他Nondopaminergic的甘蔗胺群。 NR4A2A:EGFP局限于通过顺序表达BHLH转录因子患者7(ATOH7)和胰腺转录因子1a(PTF1a)的特定祖细胞谱系,以及后药物后流体氨基细胞的标记。因此,发育NR4A2A表达表明在细菌氨基中的晚分化期间的作用。 TG(NR4A2A:EGFP)是包括多巴胺能氨基细胞的不同神经元的早期标记。它可用于评估基因操纵的后果并理解NR4A2是否仅在特定的共置基因存在下进行其作用。这将允许NR4A2用于改进再生方法。

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