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成熟肾脏中激肽释放酶和激肽原的分子层面研究

Molecular aspects of kallikrein and kininogen in the maturing kidney.

作者信息

el-Dahr S S, Dipp S

机构信息

Department of Pediatrics, Tulane University School of Medicine, New Orleans, LA 70112.

出版信息

Pediatr Nephrol. 1993 Oct;7(5):646-51. doi: 10.1007/BF00852573.

Abstract

Kinins are vasoactive paracrine peptides which participate in a wide range of functions, including the regulation of local organ blood flow, systemic blood pressure, transepithelial water and electrolyte transport, cellular growth, capillary permeability and inflammatory response, and pain. The recent introduction of specific bradykinin receptor subtype antagonists has greatly advanced our understanding of the role of the kallikrein-kinin system (KKS) in various physiological and disease states. However, a major gap remains in our knowledge of the role of kinins in early development. In this review, evidence is presented that the developing nephron expresses both tissue kallikrein and kininogen, and that the genes encoding the components of the KKS are subject to considerable developmental regulation. The activity of the intrarenal kinin-generating system is lowest in the developing kidney and increases with age. Completion of nephrogenesis is characterized by a marked surge in intrarenal kallikrein synthesis and gene transcription. Maturation is associated with redistribution of intrarenal kallikrein and its messenger RNA from the inner to outer cortical nephrons following the centrifugal pattern of nephron development. Challenges for the future include delineation of the direct role of kinins in the maturation of renal functions and elucidation of the molecular mechanisms underlying the developmental expression of the KKS.

摘要

激肽是血管活性旁分泌肽,参与多种功能,包括调节局部器官血流、全身血压、跨上皮水和电解质转运、细胞生长、毛细血管通透性、炎症反应以及疼痛。最近特异性缓激肽受体亚型拮抗剂的引入极大地推动了我们对激肽释放酶 - 激肽系统(KKS)在各种生理和疾病状态中作用的理解。然而,我们对激肽在早期发育中作用的认识仍存在重大空白。在本综述中,有证据表明发育中的肾单位表达组织激肽释放酶和激肽原,并且编码KKS组分的基因受到相当程度的发育调控。肾内激肽生成系统的活性在发育中的肾脏中最低,并随年龄增长而增加。肾发生的完成以肾内激肽释放酶合成和基因转录的显著激增为特征。成熟与肾内激肽释放酶及其信使核糖核酸从内皮质肾单位向外皮质肾单位的重新分布相关,这遵循肾单位发育的离心模式。未来的挑战包括描绘激肽在肾功能成熟中的直接作用以及阐明KKS发育表达背后的分子机制。

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