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首页> 外文期刊>BMC Developmental Biology >Dynamic expression of a glutamate decarboxylase gene in multiple non-neural tissues during mouse development
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Dynamic expression of a glutamate decarboxylase gene in multiple non-neural tissues during mouse development

机译:小鼠发育过程中多个非神经组织中谷氨酸脱羧酶基因的动态表达

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Background Glutamate decarboxylase (GAD) is the biosynthetic enzyme for the neurotransmitter γ-aminobutyric acid (GABA). Mouse embryos lacking the 67-kDa isoform of GAD (encoded by the Gad1 gene) develop a complete cleft of the secondary palate. This phenotype suggests that this gene may be involved in the normal development of tissues outside of the CNS. Although Gad1 expression in adult non-CNS tissues has been noted previously, no systematic analysis of its embryonic expression outside of the nervous system has been performed. The objective of this study was to define additional structures outside of the central nervous system that express Gad1, indicating those structures that may require its function for normal development. Results Our analysis detected the localized expression of Gad1 transcripts in several developing tissues in the mouse embryo from E9.0-E14.5. Tissues expressing Gad1 included the tail bud mesenchyme, the pharyngeal pouches and arches, the ectodermal placodes of the developing vibrissae, and the apical ectodermal ridge (AER), mesenchyme and ectoderm of the limb buds. Conclusions Some of the sites of Gad1 expression are tissues that emit signals required for patterning and differentiation (AER, vibrissal placodes). Other sites correspond to proliferating stem cell populations that give rise to multiple differentiated tissues (tail bud mesenchyme, pharyngeal endoderm and mesenchyme). The dynamic expression of Gad1 in such tissues suggests a wider role for GABA signaling in development than was previously appreciated.
机译:背景谷氨酸脱羧酶(GAD)是神经递质γ-氨基丁酸(GABA)的生物合成酶。缺少GAD 67-kDa亚型(由Gad1基因编码)的小鼠胚胎会形成继发pa的完全裂隙。该表型表明该基因可能参与中枢神经系统外部组织的正常发育。尽管以前已经注意到成年非CNS组织中Gad1的表达,但尚未对其神经系统外部的胚胎表达进行系统的分析。这项研究的目的是定义表达Gad1的中枢神经系统之外的其他结构,表明那些可能需要其功能才能正常发育的结构。结果我们的分析检测到了从E9.0-E14.5开始的小鼠胚胎中几个发育组织中Gad1转录本的局部表达。表达Gad1的组织包括尾芽间充质,咽囊和弓形,发育中的触须的外胚层和顶芽外胚层(AER),间充质和肢芽的外胚层。结论Gad1表达的某些位点是发出模式和分化所需信号的组织(AER,振膜斑)。其他位点对应于增殖的干细胞群体,其引起多种分化的组织(尾芽间充质,咽内胚层和间充质)。 Gad1在此类组织中的动态表达表明,GABA信号在发育中的作用比以前认识到的更为广泛。

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