Weare J A, Stewart T A, Gafford J T, Erdös E G
Hypertension. 1981 May-Jun;3(3 Pt 2):I50-3. doi: 10.1161/01.hyp.3.3_pt_2.i50.
We have studied inhibition of homogeneous human converting enzyme by a new inhibitor, a ketomethylene derivative of the blocked tripeptide substrate, Bz-Phe-Gly-Pro (ketoACE). KetoACE inhibited the hydrolysis of Hip-His-Leu and Hip-Phe-Arg at different concentrations (I50 values were 4 X 10(-8) M and 2 X 10(-7) M, respectively). Kinetic studies indicated that ketoACE inhibits the hydrolysis of both substrates by a similar, non-competitive mechanism. At the lowest enzyme concentration tested, using 3H-Hip-Gly-Gly as substrate, the I50 of ketoACE was 6 X 10(-9) M. KetoACE protected a functional tyrosine residue in the active site of human converting enzyme from modification with N-acetylimidazole. It is proposed that there are alternate (hydrophobic) binding sites for both inhibitors and substrates in the active site of human converting enzyme. It should be possible to develop other high-affinity inhibitors of this class that bind to hydrophobic sites and do not require metal binding via a sulfhydryl group.
我们研究了一种新型抑制剂——被封闭的三肽底物Bz - Phe - Gly - Pro的酮亚甲基衍生物(ketoACE)对人源均质转化酶的抑制作用。KetoACE在不同浓度下抑制了Hip - His - Leu和Hip - Phe - Arg的水解(I50值分别为4×10⁻⁸ M和2×10⁻⁷ M)。动力学研究表明,ketoACE通过类似的非竞争性机制抑制这两种底物的水解。在测试的最低酶浓度下,以³H - Hip - Gly - Gly为底物时,ketoACE的I50为6×10⁻⁹ M。KetoACE保护人源转化酶活性位点中的一个功能性酪氨酸残基不被N - 乙酰咪唑修饰。有人提出,在人源转化酶的活性位点中存在抑制剂和底物的替代(疏水)结合位点。应该有可能开发出这类与疏水位点结合且不需要通过巯基结合金属的其他高亲和力抑制剂。