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激肽释放酶-激肽系统的分子生物学:从结构到功能

Molecular biology of the kallikrein-kinin system: from structure to function.

作者信息

Pesquero J B, Bader M

机构信息

Departamento de Biofísica, Universidade Federal de São Paulo, Brasil.

出版信息

Braz J Med Biol Res. 1998 Sep;31(9):1197-203. doi: 10.1590/s0100-879x1998000900013.

Abstract

The participation of the kallikrein-kinin system, comprising the serine proteases kallikreins, the protein substrates kininogens and the effective peptides kinins, in some pathological processes like hypertension and cardiovascular diseases is still a matter of controversy. The use of different experimental set-ups in concert with the development of potent and specific inhibitors and antagonists for the system has highlighted its importance but the results still lack conclusivity. Over the last few years, transgenic and gene-targeting technologies associated with molecular biology tools have provided specific information about the elusive role of the kallikrein-kinin system in the control of blood pressure and electrolyte homeostasis. cDNA and genomic sequences for kinin receptors B2 and B1 from different species were isolated and shown to encode G-protein-coupled receptors and the structure and pharmacology of the receptors were characterized. Transgenic animals expressing an overactive kallikrein-kinin system were established to study the cardiovascular effects of these alterations and the results of these investigations further corroborate the importance of this system in the maintenance of normal blood pressure. Knockout animals for B2 and B1 receptors are available and their analysis also points to the role of these receptors in cardiovascular regulation and inflammatory processes. In this paper the most recent and relevant genetic animal models developed for the study of the kallikrein-kinin system are reviewed, and the advances they brought to the understanding of the biological role of this system are discussed.

摘要

激肽释放酶-激肽系统由丝氨酸蛋白酶激肽释放酶、蛋白质底物激肽原和活性肽激肽组成,该系统在高血压和心血管疾病等一些病理过程中的作用仍存在争议。使用不同的实验装置,结合针对该系统的强效特异性抑制剂和拮抗剂的开发,突出了其重要性,但结果仍缺乏确定性。在过去几年中,与分子生物学工具相关的转基因和基因靶向技术提供了关于激肽释放酶-激肽系统在控制血压和电解质稳态中难以捉摸的作用的具体信息。来自不同物种的激肽受体B2和B1的cDNA和基因组序列被分离出来,并显示编码G蛋白偶联受体,同时对这些受体的结构和药理学特性进行了表征。建立了表达过度活跃的激肽释放酶-激肽系统的转基因动物,以研究这些改变对心血管的影响,这些研究结果进一步证实了该系统在维持正常血压中的重要性。有B2和B1受体的基因敲除动物,对它们的分析也表明了这些受体在心血管调节和炎症过程中的作用。本文综述了为研究激肽释放酶-激肽系统而开发的最新相关基因动物模型,并讨论了它们在理解该系统生物学作用方面所取得的进展。

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