Abhold R H, Sullivan M J, Wright J W, Harding J W
Department of Veterinary and Comparative Anatomy, Pharmacology, and Physiology, Washington State University, Pullman.
J Pharmacol Exp Ther. 1987 Sep;242(3):957-62.
In the metabolism of angiotensin peptides by tissue angiotensinases, aminopeptidases A, B, M and leucine aminopeptidase have been identified as being particularly effective. Because the inhibitory actions of amastatin (AM) and bestatin (BE) are relatively specific for these aminopeptidases, we have examined the effects of these inhibitors on the binding, degradation and pressor activity of angiotensin II (AII) and angiotensin III (AIII). Within 30 min at 37 degrees C, significant metabolism of 125I-AII and 125I-AIII by homogenates of a block of tissue containing hypothalamus, thalamus, septum and anteroventral third ventricle regions of the brain was observed. A majority of 125I-AIII metabolism was due to soluble peptidases, whereas that of 125I-AII primarily resulted from membrane-bound peptidases. AM, BE and reduced incubation temperatures significantly decreased the metabolism of 125I-AII and 125I-AIII. After appropriate adjustments to reflect the proportion of intact radioligand bound, temperature- or inhibitor-induced decreases in metabolism were matched by corresponding increases in specific binding. Heat-treated bovine serum albumin, as a nonspecific peptidase inhibitor, had no effect on either the metabolism or binding of the ligands used. In accordance with their actions in vitro, i.c.v. administration of AM and BE prolonged the pressor activity of subsequently applied AII and AIII. Unexpectedly, the amplitude of the pressor response to AIII was increased by BE, whereas that to AII was decreased by AM. The results of this study indicate that the metabolism of AII and AIII by aminopeptidases is relatively specific and acts to modulate the actions of these peptides.(ABSTRACT TRUNCATED AT 250 WORDS)
在组织血管紧张素酶对血管紧张素肽的代谢过程中,已确定氨肽酶A、B、M和亮氨酸氨肽酶的作用尤为显著。由于抑氨肽酶素(AM)和苯丁抑制素(BE)对这些氨肽酶的抑制作用具有相对特异性,我们研究了这些抑制剂对血管紧张素II(AII)和血管紧张素III(AIII)的结合、降解及升压活性的影响。在37℃下30分钟内,观察到含有下丘脑、丘脑、隔区和前腹侧第三脑室区域的脑组织匀浆对125I - AII和125I - AIII有显著代谢。125I - AIII的大部分代谢归因于可溶性肽酶,而125I - AII的代谢主要源于膜结合肽酶。AM、BE和降低的孵育温度显著降低了125I - AII和125I - AIII的代谢。在适当调整以反映结合的完整放射性配体比例后,温度或抑制剂诱导的代谢降低与特异性结合的相应增加相匹配。经热处理的牛血清白蛋白作为非特异性肽酶抑制剂,对所用配体的代谢或结合均无影响。根据它们在体外的作用,脑室内注射AM和BE可延长随后应用的AII和AIII的升压活性。出乎意料的是,BE增加了对AIII的升压反应幅度,而AM降低了对AII的升压反应幅度。本研究结果表明,氨肽酶对AII和AIII的代谢具有相对特异性,并起到调节这些肽作用的功能。(摘要截短至250字)