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首页> 外文期刊>Molecular Neurobiology >Transgenic targeting of neuroendocrine peptide genes in the hypothalamic-pituitary axis.
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Transgenic targeting of neuroendocrine peptide genes in the hypothalamic-pituitary axis.

机译:下丘脑-垂体轴中神经内分泌肽基因的转基因靶向。

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摘要

A large number of neuroendocrine peptide genes have been tested for their ability to target expression to the hypothalamus and pituitary in transgenic mice. This has resulted in a number of powerful applications, for example, ablation or immortalization of specific cell types, and analysis of transcription regulatory sequences. The greatest amount of success in targeting cells of the neuroendocrine axis has been in the pituitary and has utilized regulatory sequences of genes that are normally expressed in pituitary. Greater difficulties have been encountered in directing expression to specific neurons in the hypothalamus. A primary goal of this review is to consider collectively the data obtained by a number of laboratories in order to draw conclusions about the general sequence requirements for achieving cell-specific expression. The data suggest that the mechanisms controlling cell-specific expression of neuropeptide genes in the hypothalamus are complex and involve multiple regulatory elements that may reside within the gene or many kilobases away from the promoter. These elements act positively and negatively in different cells to enhance or restrict expression, and may include sequences that shield a transgene from regulatory influences of other genes near the point of chromosomal insertion.
机译:已经测试了许多神经内分泌肽基因在转基因小鼠中靶向表达至下丘脑和垂体的能力。这导致了许多强大的应用,例如特定细胞类型的消融或永生化,以及转录调控序列的分析。靶向神经内分泌轴细胞的最大成功是在垂体中,并利用了通常在垂体中表达的基因的调控序列。在将表达引导至下丘脑中的特定神经元时遇到了更大的困难。这项审查的主要目的是共同考虑由许多实验室获得的数据,以便得出关于实现细胞特异性表达的一般序列要求的结论。数据表明,控制下丘脑中神经肽基因的细胞特异性表达的机制很复杂,并且涉及多个调控元件,这些调控元件可能位于该基因内或距启动子很多千碱基。这些元件在不同细胞中可正反作用,以增强或限制表达,并可包含使转基因免受染色体插入点附近其他基因的调节影响的序列。

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