Biomolecular Interactions and Inhibition Kinetics of Human Soluble Epoxide Hydrolase by Tetrapeptide YMSV

Joy I. Obeme-Nmom, Raliat O. Abioye, Toluwase H. Fatoki, Chibuike C. Udenigwe
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Abstract

Soluble epoxide hydrolase (sEH) contributes to the pathophysiology of neurodegenerative diseases by decreasing the epoxyeicosatrienoic acids/dihydroeicosatrienoic acids ratio and influencing the anti-inflammatory system. Thus, sEH inhibition reduces systemic inflammation, particularly in the brain. This study investigated sEH inhibition by a tetrapeptide, YMSV, and its mechanism of action. Enzyme inhibition kinetics demonstrated that YMSV is a mixed-competitive inhibitor of sEH, with a half-maximal inhibitory concentration (IC50) of 179.5 ± 0.92 µM. Secondary structural analysis of sEH by circular dichroism showed that YMSV decreased the α-helices by 7.7% and increased the β-sheets and random coils by 11.4% and 22%, respectively. Molecular docking simulation indicated that YMSV formed a hydrogen bond with the Asp333 residue of the hydrolase pocket of sEH in addition to the binding of non-active site residues. The findings provide new insights into the mechanism of sEH inhibition by YMSV and its potential as a peptide-based anti-depressant nutraceutical.
四肽YMSV对人可溶性环氧化物水解酶的生物分子相互作用及抑制动力学
可溶性环氧化物水解酶(sEH)通过降低环氧二碳三烯酸/二氢二十碳三烯酸比值,影响抗炎系统,参与神经退行性疾病的病理生理。因此,抑制sEH可减少全身炎症,尤其是脑部炎症。本研究探讨了四肽YMSV对sEH的抑制作用及其作用机制。酶抑制动力学表明,YMSV是一种混合竞争的sEH抑制剂,半最大抑制浓度(IC50)为179.5±0.92µM。利用圆二色性对sEH进行二次结构分析表明,YMSV使α-螺旋减少7.7%,β-片和随机线圈分别增加11.4%和22%。分子对接模拟表明,YMSV除了与非活性位点残基结合外,还与sEH水解酶袋的Asp333残基形成氢键。这些发现为YMSV抑制sEH的机制及其作为肽类抗抑郁营养品的潜力提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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