Toward Understanding the Anticancer Activity of the Phytocompounds from Eugenia uniflora Using Molecular Docking, in silico Toxicity and Dynamics Studies.

Q2 Biochemistry, Genetics and Molecular Biology Advances and Applications in Bioinformatics and Chemistry Pub Date : 2024-09-20 eCollection Date: 2024-01-01 DOI:10.2147/AABC.S473928
Pallab Kar, Ayodeji O Oriola, Adebola O Oyedeji
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Abstract

Background: The Surinam cherry, Eugenia uniflora belongs to the family Myrtaceae, an edible fruit-bearing medicinal plant with various biological properties. Several anticancer studies have been conducted on its essential oils while the non-essential oil compounds including phenolics, flavonoids, and carotenoids have not been fully investigated.

Purpose: Therefore, the study evaluated the in silico anticancer potentials of phenolic, flavonoid, and carotenoid compounds of E. uniflora against the MDM2 and Bcl-xL proteins, which are known to promote cancer cell growth and malignancy. The physicochemical parameters, validation, cytotoxicity, and mutagenicity of the polyphenols were determined using the SwissADME, pkCSM, ProTox-II, and vNN-ADMET online servers respectively. Lastly, the promising phytocompounds were validated using molecular dynamics (MD) simulation.

Results: An extensive literature search resulted in the compilation of forty-four (44) polyphenols from E. uniflora. Top-rank among the screened polyphenols is galloylastragalin, which exhibited a binding energy score of -8.7 and -8.5 kcal/mol with the hydrophobic interactions (Ala93, Val141) and (Leu54, Val93, Ile99), as well as hydrogen bond interactions (Tyr195) and (Gln72) of the proteins Bcl-xL and MDM2 respectively. A complete in silico toxicity assessment revealed that the compounds, galloylastragalin, followed by myricetin, resveratrol, p-Coumaroylquinic acid, and cyanidin-3-O-glucoside, were potentially non-mutagenic, non-carcinogenic, non-cytotoxic, and non-hepatotoxic. During the 120 ns MD simulations, the RMSF analysis of galloylastragalin- MDM2 (complex 1) and galloylastragalin- Bcl-xL (complex 2) showed the fewest fluctuations, indicating the conformational stability of the respective complexes.

Conclusion: This study has shown that polyphenol compounds of E. uniflora led by galloylastragalin, are potent inhibitors of the MDM2 and Bcl-xL cancer proteins. Thus, they may be considered as candidate polyphenols for further anticancer studies.

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利用分子对接、硅学毒性和动力学研究了解单叶洋金花植物化合物的抗癌活性
背景:苏里南樱桃(Eugenia uniflora)属于桃金娘科,是一种可食用的果实药用植物,具有多种生物特性。目的:因此,本研究评估了 E. uniflora 的酚类、类黄酮和类胡萝卜素化合物针对 MDM2 和 Bcl-xL 蛋白(已知这两种蛋白会促进癌细胞生长和恶性肿瘤)的硅学抗癌潜力。使用 SwissADME、pkCSM、ProTox-II 和 vNN-ADMET 在线服务器分别测定了多酚的理化参数、验证、细胞毒性和致突变性。最后,利用分子动力学(MD)模拟验证了有前景的植物化合物:通过广泛的文献检索,从一枝黄花中筛选出了 44 种多酚。在筛选出的多酚中,排名第一的是五倍子黄芪苷,它与 Bcl-xL 和 MDM2 蛋白质的疏水相互作用(Ala93、Val141)和(Leu54、Val93、Ile99)以及氢键相互作用(Tyr195)和(Gln72)的结合能分别为 -8.7 和 -8.5 kcal/mol。完整的硅学毒性评估结果表明,五倍子黄芪苷,其次是没食子酸、白藜芦醇、对香豆酰奎宁酸和青花素-3-O-葡萄糖苷等化合物具有潜在的非突变性、非致癌性、非细胞毒性和非肝毒性。在 120 ns 的 MD 模拟过程中,五倍子黄芪素-MDM2(复合物 1)和五倍子黄芪素-Bcl-xL(复合物 2)的 RMSF 分析显示波动最小,表明各自复合物的构象稳定:本研究表明,以五倍子黄芪苷为首的一枝黄花多酚化合物是 MDM2 和 Bcl-xL 癌症蛋白的强效抑制剂。因此,可以将它们作为候选多酚进行进一步的抗癌研究。
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来源期刊
Advances and Applications in Bioinformatics and Chemistry
Advances and Applications in Bioinformatics and Chemistry Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
CiteScore
6.50
自引率
0.00%
发文量
7
审稿时长
16 weeks
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