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穗花杉双黄酮及其衍生物作为新型人组织蛋白酶B天然抑制剂

Amentoflavone and its derivatives as novel natural inhibitors of human Cathepsin B.

作者信息

Pan Xulin, Tan Ninghua, Zeng Guangzhi, Zhang Yumei, Jia Ruirui

机构信息

State Key Laboratory of Phytochemistry and Plant Resources in West China, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650204, China.

出版信息

Bioorg Med Chem. 2005 Oct 15;13(20):5819-25. doi: 10.1016/j.bmc.2005.05.071.

Abstract

Cathepsin B (CatB) is a member of the papain superfamily of cysteine proteases and has been implicated in the pathology of numerous diseases, including arthritis and cancer. Amentoflavone is found in a number of plants with medicinal properties, including Ginkgo biloba and Hypericum perforatum (St. John's Wort). Herein, we report the structure-activity relationship (SAR) and binding mechanism of three biflavones, amentoflavone (AMF1), 4'''-methylamentoflavone (AMF2) and 7'',4'''-dimethylamentoflavone (AMF3), isolated from Taxodium mucronatum by us as novel natural inhibitors of human CatB with strong inhibitory activities at IC50 values of 1.75, 1.68 and 0.55muM, respectively. Density functional theory (DFT) method was applied to optimize the geometry structures of AMF1, AMF2 and AMF3 at the B3LYP/6-31G* level. FlexX was explored to dock the three biflavones to the binding sites of CatB, and to get a better understanding of vital interactions between these biflavones and CatB. A good correlation between the calculated quantum descriptors and the experimental inhibitory activities suggested that quantum model of these potential inhibitors is reliable. Through geometry and electron structure analysis of AMFs, it was observed that the CH3 substitute at 7'' and 4''' positions could not vary the difference in geometry structure significantly, but increase the electron density of A-ring, HOMO energy, hydrophobic property, and improve inhibitory activity. Structural and energetic analysis of AMFs and AMFs-CatB complexes showed that the electron-donor site is the A-ring, which shows the highest HOMO energy distribution, and the electron-acceptor site is the F-ring, which shows the highest LUMO energy distribution in AMFs, and the pi-pi interaction between A-ring and residue Trp221, two hydrogen bonds (O5 and Trp221; O4 and Gln23 ), hydrophobic interaction between the C-ring and residue Cys29 and CH3 substitutes at 7'' and 4''' might play a crucial role in the inhibition of AMFs on CatB. Results indicated that AMFs are new natural reversible inhibitors that would be useful in developing potent inhibitors of CatB.

摘要

组织蛋白酶B(CatB)是半胱氨酸蛋白酶木瓜蛋白酶超家族的成员,与包括关节炎和癌症在内的多种疾病的病理过程有关。杨梅素存在于许多具有药用特性的植物中,包括银杏和贯叶连翘(圣约翰草)。在此,我们报告了从墨西哥落羽杉中分离出的三种双黄酮,即杨梅素(AMF1)、4'''-甲基杨梅素(AMF2)和7'',4'''-二甲基杨梅素(AMF3)的构效关系(SAR)和结合机制,它们作为新型人CatB天然抑制剂,IC50值分别为1.75、1.68和0.55μM,具有很强的抑制活性。采用密度泛函理论(DFT)方法在B3LYP/6-31G*水平上优化AMF1、AMF2和AMF3的几何结构。利用FlexX将这三种双黄酮对接至CatB的结合位点,以更好地理解这些双黄酮与CatB之间的重要相互作用。计算得到的量子描述符与实验抑制活性之间具有良好的相关性,表明这些潜在抑制剂的量子模型是可靠的。通过对AMF的几何结构和电子结构分析发现,7''和4'''位的CH3取代基不会显著改变几何结构差异,但会增加A环的电子密度、HOMO能量、疏水性,并提高抑制活性。对AMF及其与CatB复合物的结构和能量分析表明,供电子位点是A环,其HOMO能量分布最高,受电子位点是F环,其在AMF中LUMO能量分布最高,A环与残基Trp221之间的π-π相互作用、两个氢键(O5与Trp221;O4与Gln23)、C环与残基Cys29之间的疏水相互作用以及7''和4'''位的CH3取代基可能在AMF对CatB的抑制中起关键作用。结果表明,AMF是新型天然可逆抑制剂,对开发有效的CatB抑制剂具有重要意义。

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