Vanadium complex as a potential modulator of the autophagic mechanism through proteins PI3K and ULK1: development, validation and biological implications of a specific force field for [VO(bpy)2Cl].

IF 2.7 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Taináh M R Santos, Camila A Tavares, Elaine F F da Cunha, Teodorico C Ramalho
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引用次数: 0

Abstract

The modulation of autophagy has been presented as a very useful strategy in anticancer treatments. In this sense, the vanadium complex (VC) bis(2,2'-bipyridine)chlorooxovanadium(IV), [VO(bpy)2Cl], is known for its ability to induce autophagy in triple-negative breast cancer cells (TNBC). An excellent resource to investigate the role of VC in the induction of autophagy is to make use of Molecular Dynamics (MD) simulations. However, until now, the scarcity of force field parameters for the VC prevented a reliable analysis. The autophagy signaling pathway starts with the PI3K protein and ends with ULK1. Therefore, in the first stage of this work, we developed a new AMBER force field for the VC (VCFF) from a quantum structure, obtained by DFT calculations. In the second stage, the VCFF was validated through structural analyses. From this, it was possible to investigate, through docking and MD (200 ns), the performance of the PI3K-VC and ULK1-VC systems (third stage). The analyses of this last stage involved RMSD, hydrogen bonds, RMSF and two pathways for the modulation of autophagy. In general, this work fills in the absence of force field parameters (FF) for VC by proposing an efficient and new FF, in addition to investigating, at the molecular level, how VC is able to induce autophagy in TNBC cells. This study encourages new parameterizations of metallic complexes and contributes to the understanding of the duality of autophagic processes.Communicated by Ramaswamy H. Sarma.

钒复合物通过蛋白 PI3K 和 ULK1 成为自噬机制的潜在调节剂:[VO(py)2Cl] 特定力场的开发、验证及其生物学意义。
在抗癌治疗中,调节自噬是一种非常有用的策略。在这个意义上,双(2,2'-联吡啶)氯氧钒(IV)[VO(bpy)2Cl]钒复合物(VC)因其能够诱导三阴性乳腺癌细胞(TNBC)自噬而闻名。分子动力学(MD)模拟是研究 VC 在诱导自噬中的作用的绝佳资源。然而,到目前为止,VC 力场参数的缺乏阻碍了可靠的分析。自噬信号通路始于 PI3K 蛋白,终于 ULK1。因此,在这项工作的第一阶段,我们根据 DFT 计算获得的量子结构,为 VC 开发了一个新的 AMBER 力场(VCFF)。在第二阶段,我们通过结构分析对 VCFF 进行了验证。在此基础上,可以通过对接和 MD(200 ns)研究 PI3K-VC 和 ULK1-VC 系统的性能(第三阶段)。最后一个阶段的分析涉及 RMSD、氢键、RMSF 和自噬调节的两种途径。总的来说,这项研究填补了 VC 力场参数(FF)的空白,提出了一种新的高效力场参数,并在分子水平上研究了 VC 如何诱导 TNBC 细胞自噬。这项研究鼓励对金属复合物进行新的参数化,并有助于理解自噬过程的双重性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Biomolecular Structure & Dynamics
Journal of Biomolecular Structure & Dynamics 生物-生化与分子生物学
CiteScore
8.90
自引率
9.10%
发文量
597
审稿时长
2 months
期刊介绍: The Journal of Biomolecular Structure and Dynamics welcomes manuscripts on biological structure, dynamics, interactions and expression. The Journal is one of the leading publications in high end computational science, atomic structural biology, bioinformatics, virtual drug design, genomics and biological networks.
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