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Probing the orientation of inhibitor and epoxy-eicosatrienoic acid binding in the active site of soluble epoxide hydrolase

机译:探索抑制剂和环氧-二十碳三烯酸在可溶性环氧化物水解酶活性位点结合的方向

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摘要

Soluble epoxide hydrolase (sEH) is an important therapeutic target of many diseases, such as chronic obstructive pulmonary disease (COPD) and diabetic neuropathic pain. It acts by hydrolyzing and thus regulating specific bioactive long chain polyunsaturated fatty acid epoxides (lcPUFA), like epoxyeicosatrienoic acids (EETs). To better predict which epoxides could be hydrolyzed by sEH, one needs to dissect the important factors and structural requirements that govern the binding of the substrates to sEH. This knowledge allows further exploration of the physiological role played by sEH. Unfortunately, a crystal structure of sEH with a substrate bound has not yet been reported. In this report, new photoaffinity mimics of a sEH inhibitor and EET were prepared and used in combination with peptide sequencing and computational modeling, to identify the binding orientation of different regioisomers and enantiomers of EETs into the catalytic cavity of sEH. Results indicate that the stereochemistry of the epoxide plays a crucial role in dictating the binding orientation of the substrate.
机译:可溶性环氧化物水解酶(sEH)是许多疾病的重要治疗靶标,例如慢性阻塞性肺疾病(COPD)和糖尿病性神经性疼痛。它的作用是水解,从而调节特定的生物活性长链多不饱和脂肪酸环氧化物(lcPUFA),例如环氧二十碳三烯酸(EET)。为了更好地预测sEH可以水解哪些环氧化物,需要剖析控制底物与sEH结合的重要因素和结构要求。这些知识可以进一步探索sEH发挥的生理作用。不幸的是,尚未报道具有结合了底物的sEH的晶体结构。在本报告中,制备了sEH抑制剂和EET的新的光亲和性模拟物,并与肽测序和计算模型结合使用,以鉴定EET的不同区域异构体和对映异构体在sEH催化腔中的结合方向。结果表明,环氧化物的立体化学在决定底物的结合方向上起着至关重要的作用。

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