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Towards Understanding the Neurobiologyof Mammalian Puberty:Genetic, Genomic and Proteomic Approaches

机译:了解哺乳动物青春期的神经疾病:遗传,基因组和蛋白质组学方法

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The pubertal activation of gonadotropin hormone-releasing hormone (GnRH) release in rodents and primates is brought about by coordinated changes in excitatory and inhibitory inputs to GnRH neurons. These inputs include both transsynaptic and glia-to-neuron communication pathways. Using cellular and molecular approaches in combination with transgenic animal models and high throughput procedures for gene discovery, we are beginning to gain insights into the basic mechanisms underlying this dual transsynaptic/glial control of GnRH secretion, and hence, the initiation of mammalian puberty. The results thus far obtained suggest that the initiation of puberty requires reciprocal neuron-glia communication involving excitatory amino acids and growth factors, changes in synaptic make-up and glia-neuron adhesiveness, and the transcriptional regulation of genes required for the normal function of both neurons and glial cells involved in the control of GnRH secretion.
机译:通过兴奋性和抑制意见的协调变化对GnRH神经元的协调变化引起了啮齿动物和灵长生释放激素(GnRH)释放的促肾上腺激素激素释放激素(GnRH)释放。这些输入包括突触突触型和胶导到神经元通信路径。使用细胞和分子方法与转基因动物模型和基因发现的高通量程序组合,我们开始深入了解这种双突触突触术/神经胶质控制的基本机制,从而引发哺乳动物青春期。迄今为止的结果表明,青春期的开始需要涉及兴奋性氨基酸和生长因子的互核神经元 - 胶质胶质沟通,突触构成和胶质胶质粘合性的变化,以及两者正常功能所需的基因的转录调控神经元和胶质细胞参与了GnRH分泌的控制。

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