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Isoprene Side-chain of SMTP is Essential for Soluble Epoxide Hydrolase Inhibition and Cellular Localization

机译:SMTP的异戊二烯侧链对于可溶性环氧水解酶抑制和细胞定位至关重要

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摘要

SMTPs, a family of natural small molecules that effectively treat ischemic stroke, are subject to clinical development. SMTPs enhance plasminogen activation and inhibit soluble epoxide hydrolase (sEH), leading to promotion of endogenous thrombolysis and anti-inflammation. The SMTP molecule consists of a tricyclic gamma-lactam moiety, an isoprene side-chain, and an N-linked side-chain. Here, we investigate the yet-to-be-characterized function of the isoprene side chain of SMTPs in sEH inhibition and cellular distribution. The results demonstrated that oxidative modification as well as truncation of the side-chain abolished epoxide hydrolase inhibition. The introduction of a terminal hydroxy group exceptionally unaffected epoxide hydrolase, but led to impaired cellular localization, resulting in diminution of cellular epoxide hydrolase inhibition. Thus, the isoprene side-chain of SMTP is an important pharmacophore for epoxide hydrolase inhibition and cellular localization.
机译:SMTP,一种有效治疗缺血性中风的天然小分子家族,正在接受临床开发。 SMTP增强纤溶酶原激活并抑制可溶性环氧化物水解酶(sEH),从而促进内源性溶栓和抗炎。 SMTP分子由三环γ-内酰胺部分,异戊二烯侧链和N-连接侧链组成。在这里,我们调查sEH抑制和细胞分布中SMTP的异戊二烯侧链的尚未表征的功能。结果表明,氧化修饰以及侧链的截短消除了环氧水解酶的抑制作用。末端羟基的引入异常地不影响环氧化物水解酶,但是导致受损的细胞定位,导致细胞环氧化物水解酶抑制作用减弱。因此,SMTP的异戊二烯侧链是抑制环氧水解酶和细胞定位的重要药效团。

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