首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Binding of Pro-Gly-Pro at the active site of leukotriene A4 hydrolase/aminopeptidase and development of an epoxide hydrolase selective inhibitor
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Binding of Pro-Gly-Pro at the active site of leukotriene A4 hydrolase/aminopeptidase and development of an epoxide hydrolase selective inhibitor

机译:Pro-Gly-Pro在白三烯A4水解酶/氨基肽酶活性位点的结合和环氧水解酶选择性抑制剂的开发

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摘要

Leukotriene (LT) A4 hydrolase/aminopeptidase (LTA4H) is a bifunctional zinc metalloenzyme that catalyzes the committed step in the formation of the proinflammatory mediator LTB4. Recently, the chemotactic tripeptide Pro-Gly-Pro was identified as an endogenous aminopeptidase substrate for LTA4 hydrolase. Here, we determined the crystal structure of LTA4 hydrolase in complex with a Pro-Gly-Pro analog at 1.72 Å. From the structure, which includes the catalytic water, and mass spectrometric analysis of enzymatic hydrolysis products of Pro-Gly-Pro, it could be inferred that LTA4 hydrolase cleaves at the N terminus of the palindromic tripeptide. Furthermore, we designed a small molecule, 4-(4-benzylphenyl)thiazol-2-amine, denoted ARM1, that inhibits LTB4 synthesis in human neutrophils (IC50 of ∼0.5 μM) and conversion of LTA4 into LTB4 by purified LTA4H with a Ki of 2.3 μM. In contrast, 50- to 100-fold higher concentrations of ARM1 did not significantly affect hydrolysis of Pro-Gly-Pro. A 1.62-Å crystal structure of LTA4 hydrolase in a dual complex with ARM1 and the Pro-Gly-Pro analog revealed that ARM1 binds in the hydrophobic pocket that accommodates the ω-end of LTA4, distant from the aminopeptidase active site, thus providing a molecular basis for its inhibitory profile. Hence, ARM1 selectively blocks conversion of LTA4 into LTB4, although sparing the enzyme’s anti-inflammatory aminopeptidase activity (i.e., degradation and inactivation of Pro-Gly-Pro). ARM1 represents a new class of LTA4 hydrolase inhibitor that holds promise for improved anti-inflammatory properties.
机译:白三烯(LT)A4水解酶/氨基肽酶(LTA4H)是一种双功能锌金属酶,可催化促炎性介质LTB4形成中的重要步骤。最近,趋化性三肽Pro-Gly-Pro被鉴定为LTA4水解酶的内源性氨基肽酶底物。在这里,我们确定了LTA4水解酶与Pro-Gly-Pro类似物在1.72Å处的晶体结构。从包括催化水在内的结构以及Pro-Gly-Pro酶解产物的质谱分析,可以推断出LTA4水解酶在回文三肽的N末端裂解。此外,我们设计了一个小分子4-(4-苄基苯基)噻唑-2-胺(表示为ARM1),它抑制人嗜中性粒细胞中LTB4的合成(IC50约为0.5μM)并通过纯化的LTA4H和Ki使LTA4转化为LTB4。为2.3μM。相反,较高的ARM1浓度50至100倍不会显着影响Pro-Gly-Pro的水解。与ARM1和Pro-Gly-Pro类似物形成双重复合物的LTA4水解酶的1.62-Å晶体结构表明,ARM1结合在疏水性口袋中,该口袋中LTA4的ω端远离氨基肽酶活性位点,从而提供了一个抑制作用的分子基础。因此,ARM1选择性地阻止了LTA4到LTB4的转化,尽管保留了该酶的抗炎性氨肽酶活性(即Pro-Gly-Pro的降解和失活)。 ARM1代表一类新的LTA4水解酶抑制剂,有望改善抗炎特性。

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