Orning L, Krivi G, Fitzpatrick F A
Department of Pharmacology, University of Colorado Health Science Center, Denver 80262.
J Biol Chem. 1991 Jan 25;266(3):1375-8.
Bestatin, an inhibitor of aminopeptidases, was also a potent inhibitor of leukotriene (LT) A4 hydrolase. On isolated enzyme its effects were immediate and reversible with a Ki = 201 +/- 95 mM. With erythrocytes it inhibited LTB4 formation greater than 90% within 10 min; with neutrophils it inhibited LTB4 formation by only 10% during the same period, increasing to 40% in 2 h. Bestatin inhibited LTA4 hydrolase selectively; neither 5-lipoxygenase nor 15-lipoxygenase activity in neutrophil lysates was affected. Purified LTA4 hydrolase exhibited an intrinsic aminopeptidase activity, hydrolyzing L-lysine-p-nitroanilide and L-leucine-beta-naphthylamide with apparent Km = 156 microM and 70 microM and Vmax = 50 and 215 nmol/min/mg, respectively. Both LTA4 and bestatin suppressed the intrinsic aminopeptidase activity of LTA4 hydrolase with apparent Ki values of 5.3 microM and 172 nM, respectively. Other metallohydrolase inhibitors tested did not reduce LTA4 hydrolase/aminopeptidase activity, with one exception; captopril, an inhibitor of angiotensin-converting enzyme, was as effective as bestatin. The results demonstrate a functional resemblance between LTA4 hydrolase and certain metallohydrolases, consistent with a molecular resemblance at their putative Zn2(+)-binding sites. The availability of a reversible, chemically stable inhibitor of LTA4 hydrolase may facilitate investigations on the role of LTB4 in inflammation, particularly the process termed transcellular biosynthesis.
氨肽酶抑制剂贝司他汀也是白三烯(LT)A4水解酶的有效抑制剂。对于分离出的酶,其作用迅速且可逆,Ki = 201±95 mM。在红细胞中,它在10分钟内抑制LTB4形成超过90%;在中性粒细胞中,同期它仅抑制LTB4形成10%,2小时后增加到40%。贝司他汀选择性抑制LTA4水解酶;中性粒细胞裂解物中的5-脂氧合酶和15-脂氧合酶活性均未受影响。纯化的LTA4水解酶表现出内在的氨肽酶活性,水解L-赖氨酸-对硝基苯胺和L-亮氨酸-β-萘酰胺,表观Km分别为156 μM和70 μM,Vmax分别为50和215 nmol/min/mg。LTA4和贝司他汀均抑制LTA4水解酶的内在氨肽酶活性,表观Ki值分别为5.3 μM和172 nM。测试的其他金属水解酶抑制剂均未降低LTA4水解酶/氨肽酶活性,只有一个例外;血管紧张素转换酶抑制剂卡托普利与贝司他汀效果相同。结果表明LTA4水解酶与某些金属水解酶之间存在功能相似性,这与它们假定的Zn2(+)结合位点的分子相似性一致。LTA4水解酶的可逆、化学稳定抑制剂的可用性可能有助于研究LTB4在炎症中的作用,特别是所谓的跨细胞生物合成过程。