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Gene targeting in physiological investigations: studies of the renin-angiotensin system.

机译:生理研究中的基因靶向:肾素-血管紧张素系统的研究。

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摘要

Gene targeting using homologous recombination in embryonic stem cells provides an avenue for the direct application of precise molecular genetic interventions to the study of complex systems in whole animals. As such, it represents a powerful approach for physiological investigation. Although its applications in physiology were initially limited because of technical difficulties in performing whole animal experiments in mice, these difficulties have been rapidly overcome, and gene targeting has been used productively in physiological experimentation. Studies have been performed using mice in which genes in the renin-angiotensin system (RAS) have been altered by gene targeting, and these studies illustrate both the feasibility and the utility of this technique for addressing physiological issues. These studies have demonstrated novel roles for the RAS in the development and maintenance of kidney structure and have added to the understanding of how RAS gene products regulate blood pressure and renal function. Finally, these experiments may contribute to understanding how naturally occurring mutations in RAS genes cause hypertension.
机译:使用胚胎干细胞中的同源重组进行基因靶向可为将精确的分子遗传学干预直接应用于整个动物复杂系统的研究提供一条途径。因此,它代表了一种强大的生理研究方法。尽管由于在小鼠中进行全动物实验的技术困难,其在生理学中的应用最初受到限制,但这些困难已被迅速克服,并且基因靶向已在生理学实验中得到了有效利用。使用小鼠进行了研究,其中通过基因靶向改变了肾素-血管紧张素系统(RAS)中的基因,这些研究说明了该技术解决生理问题的可行性和实用性。这些研究证明了RAS在肾脏结构的发育和维持中的新作用,并增加了对RAS基因产物如何调节血压和肾功能的理解。最后,这些实验可能有助于理解RAS基因中自然发生的突变如何导致高血压。

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