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Molecular and cellular properties of GnRH neurons revealed through transgenics in the mouse.

机译:通过小鼠中的转基因揭示了GnRH神经元的分子和细胞特性。

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Recent advances in the use of gonadotropin-releasing hormone (GnRH) promoter-driven transgenics in the mouse are beginning to open up the once elusive GnRH neuronal phenotype to detailed molecular and cellular investigation. This review highlights progress in the development of GnRH promoter transgenic constructs and the understanding of murine gene sequences required for the correct temporal and spatial targeting of transgenes to the GnRH phenotype in vivo. Strategies enabling the identification of single, living GnRH neurons in the acute brain slice preparation are allowing gene profiling and electrophysiological experiments to be undertaken. Results so far indicate that, like other neurons, GnRH cells express a variety of sodium, potassium and calcium channels as well as GABAergic and glutamatergic receptors which are responsible for determining the membrane properties and firing characteristics of the GnRH neuron. Many of these receptors and channels appear to be expressed heterogeneously within the GnRH phenotype. Furthermore, several display distinct postnatal developmental expression profiles which are likely to be of consequence to the development of synchronized, pulsatile GnRH secretion in the adult animal.
机译:在小鼠中使用促性腺激素释放激素(GnRH)启动子驱动的转基因技术的最新进展开始开放曾经难以捉摸的GnRH神经元表型,以进行详细的分子和细胞研究。这篇综述着重介绍了GnRH启动子转基因构建体的开发以及对将转基因正确地在时间和空间上靶向到体内GnRH表型所需的鼠类基因序列的理解。能够在急性脑切片制备过程中鉴定单个活GnRH神经元的策略允许进行基因谱分析和电生理实验。到目前为止的结果表明,与其他神经元一样,GnRH细胞表达各种钠,钾和钙通道以及负责确定GnRH神经元的膜特性和放电特性的GABA能和谷氨酸能受体。这些受体和通道中的许多似乎在GnRH表型中异质表达。此外,一些显示出不同的产后发育表达谱,这可能对成年动物中同步的搏动性GnRH分泌的发展有重要作用。

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