Department of Biotechnology, PSG College of Technology, Coimbatore, Tamil Nadu, India.
Department of Biochemistry, Biotechnology and Bioinformatics, Avinashilingam Institute for Home Science and Higher Education for Women, Coimbatore, Tamil Nadu, India.
J Biomol Struct Dyn. 2022 Jun;40(9):4273-4284. doi: 10.1080/07391102.2020.1855249. Epub 2020 Dec 7.
Multi-Drug Resistance (MDR) exerted by tumor cells is majorly due to the overexpression of ATP Binding cassette transporters such as ABCB1/P-glycoprotein (P-gp). Annonaceous acetogenins (AGEs) exert anticancer activity by strongly inhibiting NADH oxidase of cancer cells. The present study aims at screening a potent MDR inhibitor among acetogenins from the plant . Twenty-four AGEs were selected and screened for their pharmacokinetic properties. An inward facing conformation of P-gp is required for understanding the interaction of AGEs at the drug binding region and hence the human P-gp protein was modeled. The selected compounds were then docked with the ATP binding site and the drug binding site of modeled human P-gp. Annonacin A.1, Annohexocin.1 and Annomuricin E.1 docked better with high MM/GBSA dG binding in the drug binding region as compared with the conventional drugs. These compounds had a better docking score as compared with control inhibitor drugs at the ATP binding region. The complexes were subjected to MD simulation and Annonacin A was stable throughout the simulation period. Therefore, Annonacin A might act as a competitive inhibitor for the chemo drugs for binding at the drug binding region of P-gp. Hence it is capable of decreasing the efflux of chemo drugs out of the cells by P-Glycoprotein/ABCB1/MDR1. With this computational study, it is concluded that this compound might potentially reverse MDR, and hence can be taken forward for validation studies.Communicated by Ramaswamy H. Sarma.
肿瘤细胞的多药耐药性(MDR)主要是由于 ATP 结合盒转运蛋白的过度表达,如 ABCB1/P-糖蛋白(P-gp)。藤黄烷酮类(AGEs)通过强烈抑制癌细胞的 NADH 氧化酶发挥抗癌活性。本研究旨在从植物中筛选出一种有效的 AGE 类 MDR 抑制剂。选择了 24 种 AGEs 并对其进行了药代动力学特性筛选。为了了解 AGEs 在药物结合区域与 P-gp 的相互作用,需要 P-gp 的内面向构象,因此对人 P-gp 蛋白进行了建模。然后将所选化合物与 ATP 结合位点和建模的人 P-gp 的药物结合位点对接。与传统药物相比,annonacin A.1、Annohexocin.1 和 Annomuricin E.1 在药物结合区域与高 MM/GBSA dG 结合的对接更好。与 ATP 结合区域的对照抑制剂药物相比,这些化合物的对接评分更好。复合物进行了 MD 模拟,annonacin A 在整个模拟过程中都很稳定。因此,annonacin A 可能作为化学药物在 P-gp 的药物结合区域结合的竞争性抑制剂。因此,它能够通过 P-糖蛋白/ABCB1/MDR1 减少化学药物从细胞中的外排。通过这项计算研究,得出结论,该化合物可能具有潜在的逆转多药耐药性的作用,因此可以进一步进行验证研究。由 Ramaswamy H. Sarma 传达。