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双重血管紧张素II/血管加压素受体的肾脏免疫细胞化学分布及药理学特性

Renal immunocytochemical distribution and pharmacological properties of the dual angiotensin II/AVP receptor.

作者信息

Gonzalez C B, Herrera V L, Ruiz-Opazo N

机构信息

Section of Molecular Genetics, Whitaker Cardiovascular Institute, Boston University Medical School, MA 02118-2394, USA.

出版信息

Hypertension. 1997 Apr;29(4):957-61. doi: 10.1161/01.hyp.29.4.957.

Abstract

We have recently characterized a novel angiotensin II/vasopressin (Ang II/AVP) dual receptor coupled to adenylate cyclase and responding with equal sensitivity to Ang II and AVP. To gain insight into putative renal physiological roles of the dual Ang II/AVP receptor, we determined its pharmacological binding properties and renal immunocytochemical distribution. The effective displacement of [3H]AVP by [1-deamino-Val14,D-Arg8]-vasopressin (DVDAVP), a specific antidiuretic AVP analogue, supports a V2-type AVP receptor characteristic of the Ang II/AVP receptor. Displacement of 125I-Ang II by losartan but not by PD 123319 defines the Ang II/AVP receptor as a novel AT1 receptor isoform coupled to adenylate cyclase, in contrast to prototype Ca(2+)-mobilizing AT1 receptors. Neither Ang II nor AVP displace each other, corroborating the predicted discrete binding domains for Ang II and AVP but presenting an enigma for the dissection of putative Ang II- and AVP-specific hierarchical roles of the dual Ang II/AVP receptor. The renal cytolocalization of the Ang II/AVP receptor to the outer medullary thick ascending limb tubules and inner medullary collecting ducts is consistent with the well-established AVP stimulation of sodium and water reabsorption in these tubules. These data suggest that the Ang II/AVP receptor might provide the molecular basis for the observed similar stimulatory effects of Ang II and AVP on renal tubular sodium and fluid reabsorption at physiological hormone concentrations.

摘要

我们最近鉴定了一种新型的血管紧张素II/血管加压素(Ang II/AVP)双受体,它与腺苷酸环化酶偶联,对Ang II和AVP具有相同的敏感性。为了深入了解双Ang II/AVP受体在肾脏中的假定生理作用,我们确定了其药理学结合特性和肾脏免疫细胞化学分布。特异性抗利尿AVP类似物[1-脱氨基-Val14,D-Arg8]-血管加压素(DVDAVP)对[3H]AVP的有效置换支持了Ang II/AVP受体的V2型AVP受体特征。氯沙坦而非PD 123319对125I-Ang II的置换将Ang II/AVP受体定义为一种与腺苷酸环化酶偶联的新型AT1受体亚型,这与原型的Ca(2+)动员型AT1受体不同。Ang II和AVP都不会相互置换,这证实了预测的Ang II和AVP的离散结合域,但为剖析双Ang II/AVP受体假定的Ang II和AVP特异性分级作用带来了谜团。Ang II/AVP受体在肾脏中的细胞定位在外髓质厚升支小管和内髓质集合管,这与这些小管中AVP对钠和水重吸收的既定刺激作用一致。这些数据表明,Ang II/AVP受体可能为在生理激素浓度下观察到的Ang II和AVP对肾小管钠和液体重吸收的类似刺激作用提供分子基础。

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