首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Bacterial artificial chromosome transgenic analysis of dynamic expression patterns of regulator of G-protein signaling 4 during development. I. Cerebral cortex.
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Bacterial artificial chromosome transgenic analysis of dynamic expression patterns of regulator of G-protein signaling 4 during development. I. Cerebral cortex.

机译:细菌人工染色体转基因分析发育过程中G蛋白信号4调节因子的动态表达模式。 I.大脑皮层。

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Signaling through G-protein-coupled receptors is modulated by a family of regulator of G protein signaling (RGS) proteins that have been implicated in several neurological and psychiatric disorders. Defining the detailed expression patterns and developmental regulation of RGS proteins has been hampered by an absence of antibodies useful for mapping. We have utilized bacterial artificial chromosome (BAC) methods to create transgenic mice that express GFP under the control of endogenous regulator of G-protein signaling 4 (RGS4) enhancer elements. This report focuses on expression patterns in the developing and mature cerebral cortex. Based on reporter distribution, RGS4 is expressed by birth in neurons across all cortical domains, but in different patterns that suggest region- and layer-specific regulation. Peak expression typically occurs before puberty, with complex down-regulation by adulthood. Deep and superficial neurons, in particular, vary in their patterns across developmental age and region and,in primary sensory cortices, layer IV neurons exhibit low or no expression of the GFP reporter. These data suggest that altering RGS4 function will produce a complex neuronal phenotype with cell- and subdomain-specificity in the cerebral cortex.
机译:通过G蛋白偶联受体的信号传导受一系列涉及多种神经和精神疾病的G蛋白信号(RGS)调节蛋白家族的调节。由于缺少可用于作图的抗体,RGS蛋白的详细表达模式和发育调控的定义受到了阻碍。我们已经利用细菌人工染色体(BAC)方法来创建在G蛋白信号传导4(RGS4)增强子元件的内源性调节剂控制下表达GFP的转基因小鼠。该报告的重点是在发育中和成熟的大脑皮层中的表达模式。根据报告者分布,RGS4由出生在所有皮质区域的神经元中表达,但以不同的模式提示区域和层的特定调控。高峰表达通常发生在青春期之前,并伴随着成年期的复杂下调。尤其是深层和浅层神经元,在整个发育年龄和区域中其模式各不相同,并且在初级感觉皮层中,第IV层神经元的GFP报告基因表达低或无。这些数据表明,改变RGS4功能将在大脑皮层中产生具有细胞和亚域特异性的复杂神经元表型。

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