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脑微血管氨肽酶M对阿片肽的代谢作用

Metabolism of opioid peptides by cerebral microvascular aminopeptidase M.

作者信息

Churchill L, Bausback H H, Gerritsen M E, Ward P E

出版信息

Biochim Biophys Acta. 1987 Jan 20;923(1):35-41. doi: 10.1016/0304-4165(87)90122-x.

Abstract

Aminopeptidase M (EC 3.4.11.2), which can degrade low molecular weight opioid peptides, has been reported in both peripheral vasculature and in the CNS. Thus, we have studied the metabolism of opioid peptides by membrane-bound aminopeptidase M derived from cerebral microvessels of hog and rabbit. Both hog and rabbit microvessels were found to contain membrane-bound aminopeptidase M. At neutral pH, microvessels preferentially degraded low molecular weight opioid peptides by hydrolysis of the N-terminal Tyr1-Gly2 bond. Degradation was inhibited by amastatin (I50 = 0.2 microM) and bestatin (10 microM), but not by a number of other peptidase inhibitors including captopril and phosphoramidon. Rates of degradation were highest for the shorter peptides (Met5- and Leu5-enkephalin) whereas beta-endorphin was nearly completely resistant to N-terminal hydrolysis. Km values for the microvascular aminopeptidase also decreased significantly with increasing peptide length (Km = 91.3 +/- 4.9 and 28.9 +/- 3.5 microM for Met5-enkephalin and Met5-enkephalin-Arg6-Phe7, respectively). Peptides known to be present within or in close proximity to cerebral vessels (e.g., neurotensin and substance P) competitively inhibited enkephalin degradation (Ki = 20.4 +/- 2.5 and 7.9 +/- 1.6 microM, respectively). These data suggest that cerebral microvascular aminopeptidase M may play a role in vivo in modulating peptide-mediated local cerebral blood flow, and in preventing circulating enkephalins from crossing the blood-brain barrier.

摘要

氨肽酶M(EC 3.4.11.2)能够降解低分子量阿片肽,已在外周血管系统和中枢神经系统中被报道。因此,我们研究了源自猪和兔脑微血管的膜结合氨肽酶M对阿片肽的代谢作用。发现猪和兔的微血管均含有膜结合氨肽酶M。在中性pH条件下,微血管通过水解N端的Tyr1-Gly2键优先降解低分子量阿片肽。氨肽素(I50 = 0.2 microM)和贝司他汀(10 microM)可抑制降解,但包括卡托普利和磷酰胺在内的许多其他肽酶抑制剂则无此作用。较短的肽(甲硫氨酸脑啡肽和亮氨酸脑啡肽)降解速率最高,而β-内啡肽几乎完全抵抗N端水解。微血管氨肽酶的Km值也随着肽长度的增加而显著降低(甲硫氨酸脑啡肽和甲硫氨酸脑啡肽-精氨酸6-苯丙氨酸7的Km值分别为91.3±4.9和28.9±3.5 microM)。已知存在于脑血管内或其附近的肽(如神经降压素和P物质)竞争性抑制脑啡肽降解(Ki分别为20.4±2.5和7.9±1.6 microM)。这些数据表明,脑微血管氨肽酶M可能在体内调节肽介导的局部脑血流量以及阻止循环中的脑啡肽穿越血脑屏障方面发挥作用。

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