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Feasibility and physiological relevance of designing highly potent aminopeptidase-sparing leukotriene A4 hydrolase inhibitors

机译:设计高效的保护氨肽酶的白三烯A4水解酶抑制剂的可行性和生理意义

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摘要

Leukotriene A4 Hydrolase (LTA4H) is a bifunctional zinc metalloenzyme that comprises both epoxide hydrolase and aminopeptidase activity, exerted by two overlapping catalytic sites. The epoxide hydrolase function of the enzyme catalyzes the biosynthesis of the pro-inflammatory lipid mediator leukotriene (LT) B4. Recent literature suggests that the aminopeptidase function of LTA4H is responsible for degradation of the tripeptide Pro-Gly-Pro (PGP) for which neutrophil chemotactic activity has been postulated. It has been speculated that the design of epoxide hydrolase selective LTA4H inhibitors that spare the aminopeptidase pocket may therefore lead to more efficacious anti-inflammatory drugs. In this study, we conducted a high throughput screen (HTS) for LTA4H inhibitors and attempted to rationally design compounds that would spare the PGP degrading function. While we were able to identify compounds with preference for the epoxide hydrolase function, absolute selectivity was not achievable for highly potent compounds. In order to assess the relevance of designing such aminopeptidase-sparing LTA4H inhibitors, we studied the role of PGP in inducing inflammation in different settings in wild type and LTA4H deficient (LTA4H KO) animals but could not confirm its chemotactic potential.  Attempting to design highly potent epoxide hydrolase selective LTA4H inhibitors, therefore seems to be neither feasible nor relevant.
机译:白三烯A4水解酶(LTA4H)是一种双功能锌金属酶,它同时包含环氧化物水解酶和氨基肽酶活性,由两个重叠的催化位点发挥作用。该酶的环氧水解酶功能催化促炎性脂质介质白三烯(LT)B4的生物合成。最近的文献表明,LTA4H的氨基肽酶功能可导致三肽Pro-Gly-Pro(PGP)的降解,而PGP被假定具有中性粒细胞的趋化活性。据推测,设计省去氨基肽酶口袋的环氧化物水解酶选择性LTA4H抑制剂可导致更有效的抗炎药。在这项研究中,我们对LTA4H抑制剂进行了高通量筛选(HTS),并尝试合理设计可避免PGP降解功能的化合物。尽管我们能够鉴定出偏爱环氧化物水解酶功能的化合物,但对于强效化合物却无法实现绝对选择性。为了评估设计此类节省氨肽酶的LTA4H抑制剂的相关性,我们研究了PGP在野生型和LTA4H缺乏(LTA4H KO)动物的不同环境中诱导炎症的作用,但无法证实其趋化潜力。因此,试图设计高效的环氧水解酶选择性LTA4H抑制剂似乎既不可行也不相关。

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