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1-乙酰氧基-6α-(2-甲基丁酰基)eriolanolide对可溶性环氧化物水解酶的抑制作用:多光谱分析、分子动力学模拟、生化及体外细胞研究

Inhibition effect of 1-acetoxy-6α-(2-methylbutyryl)eriolanolide toward soluble epoxide hydrolase: Multispectral analysis, molecular dynamics simulation, biochemical, and in vitro cell-based studies.

作者信息

Zhang Juan, Yang Fang-Yu, Zhu Qi-Meng, Zhang Wen-Hao, Zhang Min, Yi Jing, Wang Yan, Zhang Hou-Li, Liang Guo-Biao, Yan Jian-Kun, Sun Cheng-Peng

机构信息

College of Pharmacy, Dalian Medical University, Dalian, China; School of Pharmaceutical Sciences, Health Science Center, Shenzhen University, Shenzhen, China.

Department of Neurosurgery, General Hospital of Northern Theater Command, Shenyang, China.

出版信息

Int J Biol Macromol. 2023 Apr 30;235:123911. doi: 10.1016/j.ijbiomac.2023.123911. Epub 2023 Mar 4.

Abstract

Soluble epoxide hydrolase (sEH) serves as a potential target in inflammation-related diseases. Based on the bioactivity-guided separation, a new sesquiterpenoid inulajaponoid A (1) was isolated from Inula japonica with a sEH inhibitory effect, together with five known compounds, such as 1-O-acetyl-6-O-isobutyrylbritannilactone (2), 6β-hydroxytomentosin (3), 1β,8β-dihydroxyeudesma-4(15),11(13)-dien-12,6α-olide (4), (4S,6S,7S,8R)-1-O-acetyl-6-O-(3-methylvaleryloxy)-britannilactone (5), and 1-acetoxy-6α-(2-methylbutyryl)eriolanolide (6). Among them, compounds 1 and 6 were assigned as mixed and uncompetitive inhibitors, respectively. The result of immunoprecipitation (IP)-MS demonstrated the specific binding of compound 6 to sEH in the complex system, which was further confirmed by the fluorescence-based binding assay showing its equilibrium dissociation constant (K = 2.43 μM). The detail molecular stimulation revealed the mechanism of action of compound 6 with sEH through the hydrogen bond of amino acid residue Gln384. Furthermore, this natural sEH inhibitor (6) could suppress the MAPK/NF-κB activation to regulate inflammatory mediators, such as NO, TNF-α, and IL-6, which confirmed the anti-inflammatory effect of inhibition of sEH by 6. These findings provided a useful insight to develop sEH inhibitors upon the sesquiterpenoids.

摘要

可溶性环氧化物水解酶(sEH)是炎症相关疾病的潜在治疗靶点。基于生物活性导向分离,从旋覆花中分离出一种具有sEH抑制作用的新型倍半萜类化合物旋覆花内酯A(1),以及五种已知化合物,如1-O-乙酰基-6-O-异丁酰基大花旋覆花内酯(2)、6β-羟基异土木香内酯(3)、1β,8β-二羟基桉叶-4(15),11(13)-二烯-12,6α-内酯(4)、(4S,6S,7S,8R)-1-O-乙酰基-6-O-(3-甲基戊酰氧基)-大花旋覆花内酯(5)和1-乙酰氧基-6α-(2-甲基丁酰基)毛叶旋覆花内酯(6)。其中,化合物1和6分别被确定为混合型和非竞争性抑制剂。免疫沉淀(IP)-质谱结果表明化合物6在复合体系中与sEH特异性结合,荧光结合试验进一步证实了这一点,其平衡解离常数(K = 2.43 μM)。详细的分子作用机制研究揭示了化合物6通过与氨基酸残基Gln384形成氢键与sEH的作用机制。此外,这种天然的sEH抑制剂(6)可以抑制MAPK/NF-κB的激活,从而调节炎症介质,如NO、TNF-α和IL-6,这证实了化合物6抑制sEH具有抗炎作用。这些发现为基于倍半萜类化合物开发sEH抑制剂提供了有益的见解。

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