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分子模拟阐述 1β-羟基当药苦苷抑制泛素结合酶 UbcH5s 的机制。

Molecular Simulation Elaborating the Mechanism of 1β-Hydroxy Alantolactone Inhibiting Ubiquitin-Conjugating Enzyme UbcH5s.

机构信息

College of Pharmacy, Chengdu University of Traditional Chinese Medicine, Chengdu, 611137, P.R. China.

出版信息

Sci Rep. 2020 Jan 10;10(1):141. doi: 10.1038/s41598-019-57104-4.

Abstract

1β-hydroxy alantolactone, a sesquiterpene lactone, exhibits potent anti-inflammatory and anticancer activities. Recently, it has been found to target UbcH5s by covalently bonding with Cys85 specifically, but the exact molecular basis remains unclear. Here, we analyzed the structural specificity of the catalytic site of UbcH5s by comparing them with other E2 proteins. Molecular dynamics was performed to detect the structural stability of the catalytic site. Docking method was then used to predict conformations of ligand docked at the catalytic site of UbcH5s. The electrostatic surface and charge distribution of ligand and proteins were analyzed by quantitative calculation. Molecular dynamics was used to detect the stability of docking complexes of 1β-hydroxy alantolactone and UbcH5s, the covalently bonded intermediates and the products. The QM/MM methodology was used to calculate the free energy barrier of hydrogen transfer and formation of covalent bond between 15-position carbon of ligand and Cys85. Results revealed that the structure of the catalytic site is stable, and 1β-hydroxy alantolactone can dock at the catalytic site with correct conformation. Molecular dynamics further demonstrates that 1β-hydroxy alantolactone can steadily combine with UbcH5s. Intermediate and product of catalytic reaction are also certified to be stable. Besides, Asp112 and Asn114 function as anchors to fix ligand, ensuring it steadily docked at catalytic site to complete covalent reaction. More importantly, we have found that Cys85 of UbcH5c is more efficient to form a covalent bond with the ligand in comparison with UbcH5a and UbcH5b. Our results successfully explained the mechanism of 1β-hydroxy alantolactone covalently bonding with UbcH5s. Such molecular mechanism may provide a better insight into the molecular development or modification for ubiquitin-related drugs.

摘要

1β-羟基土槿皮内酯是一种倍半萜内酯,具有很强的抗炎和抗癌活性。最近,人们发现它通过与 Cys85 上的半胱氨酸特异性共价结合来靶向 UbcH5s,但确切的分子基础仍不清楚。在这里,我们通过比较其他 E2 蛋白来分析 UbcH5s 催化位点的结构特异性。进行分子动力学以检测催化位点的结构稳定性。然后使用对接方法预测配体在 UbcH5s 催化位点的构象。通过定量计算分析配体和蛋白质的静电表面和电荷分布。使用分子动力学检测 1β-羟基土槿皮内酯与 UbcH5s、共价键中间产物和产物的对接复合物的稳定性。使用 QM/MM 方法计算配体 15 位碳与 Cys85 之间氢键转移和共价键形成的自由能势垒。结果表明,催化位点的结构稳定,1β-羟基土槿皮内酯可以以正确的构象对接在催化位点上。分子动力学进一步表明,1β-羟基土槿皮内酯可以与 UbcH5s 稳定结合。催化反应的中间产物和产物也被证明是稳定的。此外,Asp112 和 Asn114 作为锚定点固定配体,确保其稳定对接在催化位点上以完成共价反应。更重要的是,我们发现与 UbcH5a 和 UbcH5b 相比,UbcH5c 的 Cys85 更有效地与配体形成共价键。我们的结果成功解释了 1β-羟基土槿皮内酯与 UbcH5s 共价结合的机制。这种分子机制可能为泛素相关药物的分子开发或修饰提供更好的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ba5/6954291/5a853421191e/41598_2019_57104_Fig1_HTML.jpg

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