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一氧化氮在正常肾脏中的生物合成及稳态作用

Biosynthesis and homeostatic roles of nitric oxide in the normal kidney.

作者信息

Kone B C, Baylis C

机构信息

Department of Internal Medicine, University of Texas Medical School at Houston 77030, USA.

出版信息

Am J Physiol. 1997 May;272(5 Pt 2):F561-78. doi: 10.1152/ajprenal.1997.272.5.F561.

Abstract

Nitric oxide (NO) is an important molecular mediator of numerous physiological processes in virtually every organ. In the kidney, NO plays prominent roles in the homeostatic regulation of glomerular, vascular, and tubular function. Differential expression and regulation of the NO synthase (NOS) gene family contribute to this diversity of action. This review explores recent advances in the molecular and cell biology of the NOS isoforms and relates these findings to functions of NO in the control of normal renal hemodynamics, the glomerular microcirculation, and renal salt excretion. Newly recognized molecular diversity of the NOS gene products, factors governing NOS isozyme gene expression and catalytic activity, and the intrarenal distribution of the NOS isoforms are examined. Physiological data regarding the complex roles of NO in the control of renal hemodynamics and the glomerular microcirculation are analyzed, and the effects of chronic NOS inhibition on glomerular function and structure are presented. The contributions of NO to renal salt excretion as well as functional and molecular biological evidence for adaptive changes in NOS isoform expression during variations in dietary salt balance are discussed. Current investigative challenges and goals for future research of renal NO biology are presented.

摘要

一氧化氮(NO)是几乎每个器官中众多生理过程的重要分子介质。在肾脏中,NO在肾小球、血管和肾小管功能的稳态调节中发挥着重要作用。一氧化氮合酶(NOS)基因家族的差异表达和调节促成了这种作用的多样性。本综述探讨了NOS同工型在分子和细胞生物学方面的最新进展,并将这些发现与NO在控制正常肾血流动力学、肾小球微循环和肾脏排盐中的功能联系起来。研究了新认识到的NOS基因产物的分子多样性、调控NOS同工酶基因表达和催化活性的因素以及NOS同工型在肾内的分布。分析了关于NO在控制肾血流动力学和肾小球微循环中的复杂作用的生理学数据,并介绍了长期抑制NOS对肾小球功能和结构的影响。讨论了NO对肾脏排盐的贡献以及饮食盐平衡变化期间NOS同工型表达适应性变化的功能和分子生物学证据。还介绍了当前肾脏NO生物学研究面临的挑战和未来研究目标。

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