Sim M K
Department of Pharmacology, Faculty of Medicine, National University of Singapore.
Biochem Pharmacol. 1993 Apr 6;45(7):1524-7. doi: 10.1016/0006-2952(93)90054-z.
In homogenates of the endothelium and smooth muscle cum adventitia of the rat aorta, exogenous angiotensin (ANG) I was found to be degraded to des-aspartate-ANG I (des-Asp-ANG I) instead of ANG II. ANG II and ANG III were not detectable in either of the homogenates after 5, 10 and 30 min of incubation with the decapeptide. However, both the homogenates were able to catalyse hippuryl-L-histidyl-L-leucine (HHL) to hippuric acid and the catalysis was completely inhibited by 3 microM captopril. The data show that the angiotensin converting enzyme (ACE) present in the homogenates of rat aorta, prepared by normal laboratory procedures, is not able to hydrolyse ANG I to ANG II. This finding has important consequences in the study of vascular ACE as the assay of the enzyme is often carried out using crude homogenate and HHL or other artificial substrates. In addition, the aminopeptidase that degraded ANG I to des-Asp-ANG I was not inhibited by either amastatin or bestatin, indicating that it was not aminopeptidase A or B. Together with the recent findings of other investigators which show that the de novo production of ANG II in vascular tissues is stimulated and inhibited by beta- and alpha-agonists, respectively, our present data may suggest that production of vascular ANG II occurs only in intact tissues and is probably under adrenergic regulation.
在大鼠主动脉内皮、平滑肌及外膜的匀浆中,发现外源性血管紧张素(ANG)I降解为去天冬氨酸-ANG I(des-Asp-ANG I),而非ANG II。与十肽孵育5分钟、10分钟和30分钟后,两种匀浆中均未检测到ANG II和ANG III。然而,两种匀浆均能将马尿酰-L-组氨酰-L-亮氨酸(HHL)催化为马尿酸,且该催化作用可被3微摩尔卡托普利完全抑制。数据表明,通过常规实验室方法制备的大鼠主动脉匀浆中存在的血管紧张素转换酶(ACE)无法将ANG I水解为ANG II。这一发现对血管ACE的研究具有重要意义,因为该酶的测定通常使用粗匀浆和HHL或其他人工底物。此外,将ANG I降解为des-Asp-ANG I的氨肽酶不受氨肽菌素或贝他汀的抑制,表明它不是氨肽酶A或B。结合其他研究人员最近的发现,即血管组织中ANG II的从头生成分别受到β-和α-激动剂的刺激和抑制,我们目前的数据可能表明,血管ANG II仅在完整组织中产生,且可能受肾上腺素能调节。