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人肾“脑啡肽酶”,一种可裂解活性肽的中性金属内肽酶。

Human kidney "enkephalinase", a neutral metalloendopeptidase that cleaves active peptides.

作者信息

Gafford J T, Skidgel R A, Erdös E G, Hersh L B

出版信息

Biochemistry. 1983 Jun 21;22(13):3265-71. doi: 10.1021/bi00282a035.

Abstract

After extracting converting enzyme from a membrane fraction of homogenized human kidney, "enkephalinase" activity was solubilized with Triton X-100. Ion-exchange chromatography resolved two peaks of the "enkephalinase" activity, both of which cleaved Leu5-enkephalin at the Gly3-Phe4 bond. The major "enkephalinase" form was purified 1140-fold to homogeneity with a 14% yield. This homogeneous "enkephalinase" had a specific activity of 46 mumol min-1 mg-1 with Leu5-enkephalin as substrate. The purified enzyme, in addition to hydrolyzing Leu5-enkephalin, cleaved synthetic substrates with protected N- and C-terminal ends. On the basis of the specificity of the enzyme and its inhibition by chelating agents, human "enkephalinase" can be classified as a neutral metalloendopeptidase with a broad substrate specificity. The activity of this neutral endopeptidase with several biologically active peptides was compared to that of homogeneous human kidney converting enzyme. Both enzymes inactivated bradykinin by release of the C-terminal dipeptide but were inhibited differentially by specific inhibitors. Comparison of hydrolysis of bradykinin with that of its protected C-terminal peptide indicated that the neutral endopeptidase is more active toward the larger substrate than is converting enzyme. Although the neutral endopeptidase did not convert angiotensin I to II, it did hydrolyze angiotensin I at Pro7-Phe8 and inactivate angiotensin II by cleavage at the Tyr4-Ile5 bond.

摘要

从人肾匀浆的膜部分提取转化酶后,用 Triton X - 100 溶解“脑啡肽酶”活性。离子交换色谱分离出“脑啡肽酶”活性的两个峰,二者均在 Gly3 - Phe4 键处裂解亮氨酸脑啡肽。主要的“脑啡肽酶”形式被纯化至 1140 倍达到均一性,产率为 14%。这种均一的“脑啡肽酶”以亮氨酸脑啡肽为底物时的比活性为 46 μmol min⁻¹ mg⁻¹。纯化的酶除了水解亮氨酸脑啡肽外,还能裂解具有 N 端和 C 端保护的合成底物。根据该酶的特异性及其受螯合剂抑制的情况,人“脑啡肽酶”可归类为具有广泛底物特异性的中性金属内肽酶。将这种中性内肽酶对几种生物活性肽的活性与均一的人肾转化酶的活性进行了比较。两种酶都通过释放 C 端二肽使缓激肽失活,但受特异性抑制剂的抑制情况不同。将缓激肽与其受保护的 C 端肽的水解情况进行比较表明,中性内肽酶对较大底物的活性比对转化酶的活性更高。虽然中性内肽酶不能将血管紧张素 I 转化为 II,但它确实在 Pro7 - Phe8 处水解血管紧张素 I,并通过在 Tyr4 - Ile5 键处裂解使血管紧张素 II失活。

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