Marine Bioactive Molecules as Inhibitors of the Janus Kinases: A Comparative Molecular Docking and Molecular Dynamics Simulation Approach.

IF 2.8 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Emad A Ahmed, Salah A Abdelsalam
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引用次数: 0

Abstract

A treasure trove of naturally occurring biomolecules can be obtained from sea living organisms to be used as potential antioxidant and anti-inflammatory agents. These bioactive molecules can target signaling molecules involved in the severity of chronic autoimmune diseases such as rheumatoid arthritis (RA). The intracellular tyrosine kinases family, Janus kinases (JAKs, includes JAK1, JAK2, and JAK3), is implicated in the pathogenesis of RA through regulating several cytokines and inflammatory processes. In the present study, we conducted molecular docking and structural analysis investigations to explore the role of a set of bioactive molecules from marine sources that can be used as JAKs' specific inhibitors. Around 200 antioxidants and anti-inflammatory molecules out of thousands of marine molecules found at the Comprehensive Marine Natural Products Database (CMNPD) website, were used in that analysis. The details of the interacting residues were compared to the recent FDA approved inhibitors tofacitinib and baricitinib for data validation. The shortlisted critical amino acids residues of our pharmacophore-based virtual screening were LYS905, GLU957, LEU959, and ASP1003 at JAK1, GLU930 and LEU932 at JAK2, and GLU905 and CYS909 of JAK3. Interestingly, marine biomolecules such as Sargachromanol G, Isopseudopterosin E, Seco-Pseudopterosin, and CID 10071610 showed specific binding and significantly higher binding energy to JAK1 active/potential sites when being compared with the approved inhibitors. In addition, Zoanthoxanthin and Fuscoside E bind to JAK2's critical residues, GLU930 and LEU932. Moreover, Phorbaketal and Fuscoside E appear to be potential candidates that can inhibit JAK3 activity. These results were validated using molecular dynamics simulation for the docked complexes, JAK1(6sm8)/SG, JAK2 (3jy9)/ZAX, and JAK3 (6pjc)/Fuscoside E, where stable and lower binding energy were found based on analyzing set of parameters, discussed below (videos are attached). A promising role of these marine bioactive molecules can be confirmed in prospective preclinical/clinical investigations using rheumatoid arthritis models.

作为 Janus 激酶抑制剂的海洋生物活性分子:分子对接和分子动力学模拟比较方法。
从海洋生物中可以获得天然生物大分子宝库,用作潜在的抗氧化剂和抗炎剂。这些生物活性分子可以针对与类风湿性关节炎(RA)等慢性自身免疫性疾病严重程度有关的信号分子。细胞内酪氨酸激酶家族 Janus 激酶(JAKs,包括 JAK1、JAK2 和 JAK3)通过调节多种细胞因子和炎症过程与类风湿性关节炎的发病机制有关。在本研究中,我们进行了分子对接和结构分析研究,以探索可用作 JAKs 特异性抑制剂的一组海洋生物活性分子的作用。在海洋天然产物综合数据库(CMNPD)网站上找到的数千种海洋分子中,约有 200 种抗氧化剂和抗炎分子被用于该分析。将相互作用残基的细节与美国食品及药物管理局最近批准的抑制剂托法替尼和巴利替尼进行了比较,以验证数据。我们基于药层的虚拟筛选筛选出的关键氨基酸残基包括:JAK1 的 LYS905、GLU957、LEU959 和 ASP1003,JAK2 的 GLU930 和 LEU932,以及 JAK3 的 GLU905 和 CYS909。有趣的是,与已获批准的抑制剂相比,海洋生物大分子,如 Sargachromanol G、Isopseudopterosin E、Seco-Pseudopterosin 和 CID 10071610 与 JAK1 活性/潜在位点有特异性结合,且结合能明显更高。此外,动物黄酮甙和鱼腥甙 E 与 JAK2 的关键残基 GLU930 和 LEU932 结合。此外,Phorbaketal 和 Fuscoside E 似乎是可以抑制 JAK3 活性的潜在候选物质。这些结果通过分子动力学模拟验证了对接复合物:JAK1(6sm8)/SG、JAK2 (3jy9)/ZAX和JAK3 (6pjc)/Fuscoside E。利用类风湿性关节炎模型进行的前瞻性临床前/临床研究可以证实这些海洋生物活性分子具有良好的作用。
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
Current Issues in Molecular Biology
Current Issues in Molecular Biology 生物-生化研究方法
CiteScore
2.90
自引率
3.20%
发文量
380
审稿时长
>12 weeks
期刊介绍: Current Issues in Molecular Biology (CIMB) is a peer-reviewed journal publishing review articles and minireviews in all areas of molecular biology and microbiology. Submitted articles are subject to an Article Processing Charge (APC) and are open access immediately upon publication. All manuscripts undergo a peer-review process.
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