In Silico Prediction of The Antiangiogenesis Activity of Heliannuol Lactone sesquiterpenes Compounds from Sunflower (Heliannthus annuus L.)

Roihatul Muti’ah, E. Rahmawati, Tanaya Jati Dhrama Dewi, Alif Firman Firdausy
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Abstract

Heliannuols are sesquiterpenes lactone compounds considered to have anticancer activity on the brain cancer. Cancer cell growth is related to overexpression of Vascular Endothelial Growth Factor Receptor-2 (VEGFR-2) as a pro-angiogenic pathway, which becomes the main factor of angiogenesis and progression. This research aims to predict anti-angiogenic, toxicity, and physicochemical properties of heliannuols. Physicochemical properties were predicted referred to Lipinski’s rule of five (Lipinski RO5), while absorption, distribution, metabolism, and excretion were predicted by using pkCSM online tool. The toxicity of compounds was predicted by using Protox II online tool, and interaction of the ligand with receptors was predicted by conducting validation (VEGFR-2 (PDB ID: 3WZE)) and molecular docking using Molegro Virtual Docker (MVD). The result revealed that Lipinski RO5 compatible heliannuols had the lowest LD50 2148 mg/kg predictive LD50 predictive values of heliannuol D. The docking result was described by rerank score (RS), representing the bound energy form and compares with Sorafenib as a reference drug. Five medium strength VEGFR-2 chemical substances with rerank score: heliannuol A -56.9496, heliannuol heliannuol B -70.83646, heliannuol C -61,3292, heliannuol D -49.61646, and heliannuol E -75.5164. No better rerank score was recorded for all inhibitors than sorafenib (-128.0683). The heliannuols interacted with amino acid residues Glu885 and Asp1046 that probably conferred the antiangiogenic activity. Taken together, heliannuol D had the greates activity to the target protein and complied Lipinski RO5.Keywords: anti-angiogenic, toxicity, heliannuol, VEGFR-2, brain cancer, molecular docking.
向日葵(Heliannthus annuus L.)中向日葵甾醇内酯倍半萜类化合物抗血管生成活性的计算机预测
向日葵醇是一种倍半萜内酯类化合物,被认为对脑癌具有抗癌活性。癌细胞生长与血管内皮生长因子受体-2 (VEGFR-2)过表达有关,作为促血管生成途径,成为血管生成和进展的主要因素。本研究旨在预测向日葵醇的抗血管生成、毒性和理化性质。理化性质预测采用Lipinski 's rule of five (Lipinski RO5),吸收、分布、代谢和排泄采用pkCSM在线工具进行预测。利用Protox II在线工具预测化合物的毒性,通过验证(VEGFR-2 (PDB ID: 3WZE))和Molegro Virtual Docker (MVD)进行分子对接来预测配体与受体的相互作用。结果显示,Lipinski RO5相容的heliannuols具有最低的LD50 (2148 mg/kg)预测heliannuol d的LD50预测值。对接结果用rerank score (RS)描述,代表结合能形式,并与作为参比药物的索拉非尼进行比较。5种中等强度VEGFR-2化学物质:heliannuol A -56.9496、heliannuol B -70.83646、heliannuol C -61,3292、heliannuol D -49.61646、heliannuol E -75.5164。所有抑制剂的重排序评分均未高于索拉非尼(-128.0683)。helinannuols与氨基酸残基Glu885和Asp1046相互作用,可能赋予了抗血管生成活性。综上所述,向日葵醇D对靶蛋白具有较大的活性,并具有Lipinski RO5的活性。关键词:抗血管生成,毒性,heliannuol, VEGFR-2,脑癌,分子对接
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