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熊果酸与转录因子 BRAF、V600E 和 V600K 的相互作用:一种针对新的潜在黑色素瘤治疗方法的计算方法。

Ursolic acid interaction with transcription factors BRAF, V600E, and V600K: a computational approach towards new potential melanoma treatments.

机构信息

Laboratorio de Química Cuántica y Modelado Molecular, Unidad Académica de Ciencias Químicas, Universidad Autónoma de Zacatecas, 98160, Zacatecas, Mexico.

Grupo de Diseño Asistido Por Computadora y Síntesis de Fármacos, Facultad de Química, Universidad Autónoma de Querétaro, Centro Universitario, 76010, Querétaro, Mexico.

出版信息

J Mol Model. 2024 Oct 10;30(11):373. doi: 10.1007/s00894-024-06165-y.

Abstract

CONTEXT

Melanoma is one of the cancers with the highest mortality rate for its ability to metastasize. Several targets have undergone investigation for the development of drugs against this pathology. One of the main targets is the kinase BRAF (RAF, rapidly accelerated fibrosarcoma). The most common mutation in melanoma is BRAFV600E and has been reported in 50-90% of patients with melanoma. Due to the relevance of the BRAFV600E mutation, inhibitors to this kinase have been developed, vemurafenib-OMe and dabrafenib. Ursolic acid (UA) is a pentacyclic triterpene with a privileged structure, the pentacycle scaffold, which allows to have a broad variety of biological activity; the most studied is its anticancer capacity. In this work, we reported the interaction profile of vemurafenib-OMe, dabrafenib, and UA, to define whether UA has binding capacity to BRAFWT, BRAFV600E, and BRAFV600K. Homology modeling of BRAFWT, V600E, and V600K; molecular docking; and molecular dynamics simulations were carried out and interactions and residues relevant to the binding of the inhibitors were obtained. We found that UA, like the inhibitors, presents hydrogen bond interactions, and hydrophobic interactions of van der Waals, and π-stacking with I463, Q530, C532, and F583. The ΔG of ursolic acid in complex with BRAFV600K (- 63.31 kcal/mol) is comparable to the ΔG of the selective inhibitor dabrafenib (- 63.32 kcal/mol) in complex to BRAFV600K and presents a ΔG like vemurafenib-OMe with BRAFWT and V600E. With this information, ursolic acid could be considered as a lead compound for design cycles and to optimize the binding profile and the selectivity towards mutations for the development of new selective inhibitors for BRAFV600E and V600K to new potential melanoma treatments.

METHODS

The homology modeling calculations were executed on the public servers I-TASSER and ROBETTA, followed by molecular docking calculations using AutoGrid 4.2.6, AutoDockGPU 1.5.3, and AutoDockTools 1.5.6. Molecular dynamics and metadynamics simulations were performed in the Desmond module of the academic version of the Schrödinger-Maestro 2020-4 program, utilizing the OPLS-2005 force field. Ligand-protein interactions were evaluated using Schrödinger-Maestro program, LigPlot + , and PLIP (protein-ligand interaction profiler). Finally, all of the protein figures presented in this article were made in the PyMOL program.

摘要

背景

黑色素瘤因其转移能力而成为死亡率最高的癌症之一。已经有几个靶点被用于开发针对这种病理的药物。主要靶点之一是激酶 BRAF(RAF,快速加速纤维肉瘤)。黑色素瘤中最常见的突变是 BRAFV600E,据报道约 50-90%的黑色素瘤患者存在该突变。由于 BRAFV600E 突变的重要性,已经开发出针对该激酶的抑制剂,如 vemurafenib-OMe 和 dabrafenib。熊果酸(UA)是一种五环三萜,具有特权结构,五环支架,使其具有广泛的生物活性;最受研究的是其抗癌能力。在这项工作中,我们报告了 vemurafenib-OMe、dabrafenib 和 UA 的相互作用谱,以确定 UA 是否具有与 BRAFWT、BRAFV600E 和 BRAFV600K 结合的能力。对 BRAFWT、V600E 和 V600K 进行同源建模;分子对接;和分子动力学模拟,并获得了与抑制剂结合相关的相互作用和残基。我们发现,UA 与抑制剂一样,具有氢键相互作用和范德华的疏水相互作用,以及与 I463、Q530、C532 和 F583 的π-堆积。UA 与 BRAFV600K 复合物的 ΔG(-63.31 kcal/mol)与选择性抑制剂 dabrafenib 与 BRAFV600K 复合物的 ΔG(-63.32 kcal/mol)相当,与 vemurafenib-OMe 与 BRAFWT 和 V600E 的 ΔG 相当。有了这些信息,熊果酸可以被认为是一个先导化合物,用于设计循环,以优化与突变的结合谱和选择性,从而开发针对 BRAFV600E 和 V600K 的新的选择性抑制剂,用于新的潜在的黑色素瘤治疗。

方法

同源建模计算在公共服务器 I-TASSER 和 ROBETTA 上执行,然后使用 AutoGrid 4.2.6、AutoDockGPU 1.5.3 和 AutoDockTools 1.5.6 进行分子对接计算。分子动力学和元动力学模拟在 Schrödinger-Maestro 2020-4 程序的学术版 Desmond 模块中进行,使用 OPLS-2005 力场。利用 Schrödinger-Maestro 程序、LigPlot+和 PLIP(蛋白质-配体相互作用分析器)评估配体-蛋白质相互作用。最后,本文中所有的蛋白质图都是在 PyMOL 程序中制作的。

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