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内源性类洋地黄因子:历史概述

Endogenous digitalis-like factors: an overview of the history.

作者信息

Buckalew Vardaman M

机构信息

Medical Center Boulevard, Wake Forest School of Medicine , Winston Salem, NC , USA.

出版信息

Front Endocrinol (Lausanne). 2015 Apr 13;6:49. doi: 10.3389/fendo.2015.00049. eCollection 2015.

Abstract

The sodium pump is a ubiquitous cell surface enzyme, a Na, K ATPase, which maintains ion gradients between cells and the extracellular fluid (ECF). The extracellular domain of this enzyme contains a highly conserved binding site, a receptor for a plant derived family of compounds, the digitalis glycosides. These compounds inhibit the enzyme and are used in the treatment of congestive heart failure and certain cardiac arrhythmias. The highly conserved nature of this enzyme and its digitalis receptor led to early suggestions that endogenous regulators might exist. Recent examination of this hypothesis emerged from research in two separate areas: the regulation of ECF volume by a natriuretic hormone (NH), and the regulation of peripheral vascular resistance by a circulating inhibitor of vascular Na, K ATPase. These two areas merged with the hypothesis that NH and the vascular Na, K ATPase inhibitor were in fact the same entity, and that it played a causative role in the pathophysiology of certain types of hypertension. The possibility that multiple endogenous digitalis-like factors (EDLFs) exist emerged from efforts to characterize the circulating enzyme inhibitory activity. In this review, the development of this field from its beginnings is traced, the current status of the structure of EDLFs is briefly discussed, and areas for future development are suggested.

摘要

钠泵是一种普遍存在于细胞表面的酶,即钠钾ATP酶,它维持着细胞与细胞外液(ECF)之间的离子梯度。该酶的细胞外结构域含有一个高度保守的结合位点,是一类源自植物的化合物——洋地黄糖苷的受体。这些化合物可抑制该酶,用于治疗充血性心力衰竭和某些心律失常。这种酶及其洋地黄受体的高度保守性质使得人们很早就推测可能存在内源性调节剂。最近对这一假说的研究源于两个不同领域的研究:利钠激素(NH)对细胞外液容量的调节,以及血管钠钾ATP酶循环抑制剂对外周血管阻力的调节。这两个领域与以下假说相结合,即NH和血管钠钾ATP酶抑制剂实际上是同一实体,并且它在某些类型高血压的病理生理学中起因果作用。从对循环酶抑制活性的表征研究中出现了多种内源性类洋地黄因子(EDLFs)存在的可能性。在这篇综述中,追溯了该领域从起源开始的发展历程,简要讨论了EDLFs结构的当前状况,并提出了未来发展的方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5465/4394700/d58ff7dc1ce4/fendo-06-00049-g001.jpg

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