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计算机阐明睡茄药用植物中醉茄素 A 针对雌激素受体抑制乳腺癌的可能潜力

In Silico Elucidation of the Plausible Inhibitory Potential of Withaferin A of Withania Somnifera Medicinal Herb Against Breast Cancer Targeting Estrogen Receptor.

机构信息

Department of Botany and Microbiology, College of Science, King Saud University, Riyadh- 11451, Saudi Arabia.

Department of Zoology, College of Science, King Saud University, Riyadh- 11451, Saudi Arabia.

出版信息

Curr Pharm Biotechnol. 2020;21(9):842-851. doi: 10.2174/1389201021666200129121843.

DOI:10.2174/1389201021666200129121843
PMID:31995002
Abstract

BACKGROUND

Estrogen Receptors (ER) are members of the nuclear intracellular receptors family. ER once activated by estrogen, it binds to DNA via translocating into the nucleus and regulates the activity of various genes. Withaferin A (WA) - an active compound of a medicinal plant Withania somnifera was reported to be a very effective anti-cancer agent and some of the recent studies has demonstrated that WA is capable of arresting the development of breast cancer via targeting estrogen receptor.

OBJECTIVE

The present study is aimed at understanding the molecular level interactions of ER and Tamoxifen in comparison to Withaferin A using In-silico approaches with emphasis on Withaferin A binding capability with ER in presence of point mutations which are causing de novo drug resistance to existing drugs like Tamoxifen.

METHODS

Molecular modeling and docking studies were performed for the Tamoxifen and Withaferin A with the Estrogen receptor. Molecular docking simulations of estrogen receptor in complex with Tamoxifen and Withaferin A were also performed.

RESULTS

Amino acid residues, Glu353, Arg394 and Leu387 was observed as crucial for binding and stabilizing the protein-ligand complex in case of Tamoxifen and Withaferin-A. The potential of Withaferin A to overcome the drug resistance caused by the mutations in estrogen receptor to the existing drugs such as Tamoxifen was demonstrated.

CONCLUSION

In-silico analysis has elucidated the binding mode and molecular level interactions which are expected to be of great help in further optimizing Withaferin A or design / discovery of future breast cancer inhibitors targeting estrogen receptor.

摘要

背景

雌激素受体(ER)是核细胞内受体家族的成员。ER 一旦被雌激素激活,它就会通过转位进入细胞核与 DNA 结合,从而调节各种基因的活性。从药用植物睡茄中提取的活性化合物醉茄素 A(WA)已被报道为一种非常有效的抗癌剂,最近的一些研究表明,WA 通过靶向雌激素受体能够阻止乳腺癌的发展。

目的

本研究旨在通过计算机模拟方法,比较 ER 和他莫昔芬与醉茄素 A 的分子水平相互作用,重点研究在导致现有药物(如他莫昔芬)产生新的耐药性的点突变存在的情况下,醉茄素 A 与 ER 的结合能力。

方法

对他莫昔芬和醉茄素 A 与雌激素受体进行了分子建模和对接研究。还对雌激素受体与他莫昔芬和醉茄素 A 形成复合物的分子对接模拟进行了研究。

结果

观察到在与他莫昔芬和醉茄素 A 结合和稳定蛋白-配体复合物时,氨基酸残基 Glu353、Arg394 和 Leu387 是至关重要的。研究表明,醉茄素 A 有可能克服雌激素受体突变导致现有药物(如他莫昔芬)耐药的问题。

结论

计算机模拟分析阐明了结合模式和分子水平相互作用,这有望对进一步优化醉茄素 A 或设计/发现针对雌激素受体的未来乳腺癌抑制剂提供很大帮助。

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