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血管紧张素II的结合与降解研究

Binding and degradation studies on angiotensin II.

作者信息

Grover A K, Kwan C Y, Kostka P, Shephard S M, Daniel E E

出版信息

Can J Physiol Pharmacol. 1984 Sep;62(9):1203-8. doi: 10.1139/y84-201.

DOI:10.1139/y84-201
PMID:6498633
Abstract

125I-labelled angiotensin II (AII) and [3H]AII showed specific binding to rat mesenteric artery microsomes. The binding in either instance was inhibited by the AII analog saralasin. [3H]AII was not degraded by the microsomes but 125I-labelled AII was degraded. Autoradiography of thin layer chromatograms of 125I-labelled AII treated with microsomes showed the parent peak (Rf = 0.4-0.45) and a single major degradation product peak (Rf = 0.25-0.30), and [125I]NaI had an Rf value higher than both 125I-labelled AII and its degradation product. Chromatography of unlabelled AII or [3H]AII gave the same Rf value as 125I-labelled AII, but unlabelled AIII moved with Rf = 0.55-0.60. The formation of the degradation product was time and membrane concentration dependent. The degradation occurred at pH 6 and 7 but not at pH 8. However, specific binding of 125I-labelled AII was also lower at pH 8. The degradation could not be completely inhibited by the use of crude particulate fractions instead of microsomes, by preparing membranes in presence of protease inhibitors, or by including protease inhibitors and sulfhydryl agents in the assay medium. However, the degradation product neither showed specific binding to the microsomes nor interfered with the specific binding of 125I-labelled AII. Furthermore, the tightly bound material eluted from the microsomes in presence of 0.05 M acetic acid at 0 degree C consisted predominantly of the parent compound. The implications of these findings are discussed both in terms of validity of the binding experiments and possible relationship between the degradation and the receptor binding sites in the membrane.

摘要

125I标记的血管紧张素II(AII)和[3H]AII显示出与大鼠肠系膜动脉微粒体的特异性结合。在这两种情况下,结合均被AII类似物沙拉新抑制。[3H]AII未被微粒体降解,但125I标记的AII被降解。用微粒体处理的125I标记的AII的薄层色谱放射自显影片显示了母峰(Rf = 0.4 - 0.45)和一个单一的主要降解产物峰(Rf = 0.25 - 0.30),并且[125I]NaI的Rf值高于125I标记的AII及其降解产物。未标记的AII或[3H]AII的色谱分析给出了与125I标记的AII相同的Rf值,但未标记的AIII的Rf值为0.55 - 0.60。降解产物的形成取决于时间和膜浓度。降解发生在pH 6和7时,但在pH 8时不发生。然而,125I标记的AII在pH 8时的特异性结合也较低。使用粗颗粒部分代替微粒体、在蛋白酶抑制剂存在下制备膜或在测定介质中加入蛋白酶抑制剂和巯基试剂均不能完全抑制降解。然而,降解产物既未显示出与微粒体的特异性结合,也未干扰125I标记的AII的特异性结合。此外,在0℃下0.05 M乙酸存在下从微粒体中洗脱的紧密结合物质主要由母体化合物组成。这些发现的意义将从结合实验的有效性以及膜中降解与受体结合位点之间的可能关系两方面进行讨论。

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Binding and degradation studies on angiotensin II.血管紧张素II的结合与降解研究
Can J Physiol Pharmacol. 1984 Sep;62(9):1203-8. doi: 10.1139/y84-201.
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