In Silico Studies of Phytoconstituents to Identify Potential Inhibitors for ERα Protein of Breast Cancer

被引:0
作者
Alagarsamy, Veerachamy [1 ]
Sulthana, Mohaideen Thasthagir [1 ]
Narendhar, Bandi [1 ]
Solomon, Viswas Raja [1 ]
Parthiban, Periyasamy [2 ]
Satishchandra, Aithamraju [1 ]
Jothi, Lalkote Aruna [1 ]
Murugesan, Sankaraanarayanan [3 ]
机构
[1] MNR Coll Pharm, Med Chem Res Lab, Sangareddy 502294, India
[2] Vellalar Coll Pharm, Dept Pharmaceut, Erode 638012, India
[3] Birla Inst Technol & Sci, Dept Pharm, Pilani Campus, Pilani 333031, India
关键词
ER alpha; Breast cancer; In silico; Molecular docking; ADME(T); Nutraceuticals; MD Analysis; Drug development; ESTROGEN; DYNAMICS; GROWTH;
D O I
10.2174/0115734064301748240821081206
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Background It is noteworthy that a wide array of plants and nutraceuticals are effectively utilized in the treatment of various cancers, demonstrating potent effects on different cancer targets with fewer side effects. Notably, estrogen alpha has been identified as a crucial factor in breast cancer cell proliferation. Agents that can antagonize its action hold promise as potential drug leads for the treatment of breast cancer. Objective This study aims to discover and identify the potential inhibitors against the most influential ER alpha receptor by the computational approach of 134 phytochemicals from 17 medicinal plants by using in silico docking studies. Methods The molecular docking was performedby a genetic algorithm using the Auto Dock Vina program, and the validation of docking was also performed by using Molecular Dynamic (MD) simulation by the Desmond tool of Schr & ouml;dinger molecular modeling. Drug-likeness properties and toxicity studies were conducted using SWISS PRO. Results The top ten highest binding energy phytochemicals ginicidin (-10.8 kcal/mol), lemairone (-10.5 kcal/mol), ixoratannin (-10.0 kcal/mol), hydnocarpine (-9.8 kcal/mol), arabelline (-9.8 kcal/mol), acutilobine E (-9.8 kcal/mol), chaparinone (-8.9 kcal/mol), plumieride coumerate (-8.8 kcal/mol), acutilobine C (-8.7 kcal/mol), and mezerein (-8.7 kcal/mol) were taken for drug-likeness test and ADMET profile prediction with the help of web-based server SWISS ADME and protoxII. Docking's study dictated that ten phytochemical constituents showed greater binding interactions than standard tamoxifen (-6.6 kcal/mol) towards the target protein ER alpha. MSD study was achieved for the most active 4 phytoconstituents, and the stability of the ligand-protein complex was confirmed and showed that all the four compounds possess comparatively stable ligand-protein complexes with ER alpha target as compared to the tamoxifen-ER alpha complex. Conclusion Among the top ten phytochemicals, ginicidin (glycoside) formed a more stable complex and had greater binding affinity than standard tamoxifen with better safety profiles. Hence, this compound can be further studied for lead optimization and drug development for the treatment of breast cancer.
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页码:144 / 159
页数:16
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