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洋地黄样甾体激素:新的作用机制及生物学意义

The digitalis-like steroid hormones: new mechanisms of action and biological significance.

作者信息

Nesher Maoz, Shpolansky Uri, Rosen Haim, Lichtstein David

机构信息

Department of Physiology, The Hebrew University-Hadassah Medical School, Jerusalem, Israel.

The Kuvin Center for the Study of Infectious and Tropical Diseases, The Hebrew University-Hadassah Medical School, Jerusalem, Israel.

出版信息

Life Sci. 2007 May 16;80(23):2093-2107. doi: 10.1016/j.lfs.2007.03.013. Epub 2007 Apr 1.

Abstract

Digitalis-like compounds (DLC) are a family of steroid hormones synthesized in and released from the adrenal gland. DLC, the structure of which resembles that of plant cardiac glycosides, bind to and inhibit the activity of the ubiquitous cell surface enzyme Na(+), K(+)-ATPase. However, there is a large body of evidence suggesting that the regulation of ion transport by Na(+), K(+)-ATPase is not the only physiological role of DLC. The binding of DLC to Na(+), K(+)-ATPase induces the activation of various signal transduction cascades that activate changes in intracellular Ca(++) homeostasis, and in specific gene expression. These, in turn, stimulate endocytosis and affect cell growth and proliferation. At the systemic level, DLC were shown to be involved in the regulation of major physiological parameters including water and salt homeostasis, cardiac contractility and rhythm, systemic blood pressure and behavior. Furthermore, the DLC system has been implicated in several pathological conditions, including cardiac arrhythmias, hypertension, cancer and depressive disorders. This review evaluates the evidence for the different aspects of DLC action and delineates open questions in the field.

摘要

洋地黄样化合物(DLC)是一类在肾上腺合成并释放的甾体激素。DLC的结构与植物强心苷相似,它能结合并抑制普遍存在的细胞表面酶Na(+),K(+)-ATP酶的活性。然而,大量证据表明,Na(+),K(+)-ATP酶对离子转运的调节并非DLC唯一的生理作用。DLC与Na(+),K(+)-ATP酶的结合会诱导各种信号转导级联反应的激活,这些反应会引发细胞内Ca(++)稳态的变化以及特定基因表达的改变。反过来,这些变化会刺激内吞作用并影响细胞生长和增殖。在系统水平上,DLC被证明参与调节包括水盐平衡、心脏收缩力和节律、全身血压及行为等主要生理参数。此外,DLC系统还与多种病理状况有关,包括心律失常、高血压、癌症和抑郁症。本文综述评估了DLC作用不同方面的证据,并阐述了该领域尚未解决的问题。

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