School of Applied Sciences, Kalinga Institute of Industrial Technology (KIIT) Deemed to be University, Bhubaneswar, India.
Department of Chemistry, National Institute of Technology, Raipur, India.
J Biomol Struct Dyn. 2022 Nov;40(18):8587-8601. doi: 10.1080/07391102.2021.1914169. Epub 2021 Apr 20.
A protein's function is closely related to its structural properties. Mutations can affect the functionality of a protein. Different cancer tissues have found disordered expression of the cyclin-dependent kinase 2-associated Protein 1 (CDK2AP1) gene. A protein molecule's conformational flexibility affects its interaction with phytochemicals and their biological partners at various levels. has been investigated most extensively for its medicinal activities like anticancer properties. It contains many bioactive compounds like Boeravinone A, Boeravinone B, Boeravinone C, Boeravinone D, Boeravinone E, Boeravinone F, Boeravinone G, Boeravinone H, Boeravinone I and Boeravinone J. We have studied to analyse the binding efficacy properties as well as essential dynamic behaviour, free energy landscape of both the native and mutant protein CDK2AP1 with bioactive compounds from plant extracts through computational approaches by homology modelling, docking and molecular dynamics simulation. From the molecular docking study, we found that. Boeravinone J have best binding affinity (-7.9 kcal/mol) towards the native protein of CDKAP1 compared to others phytochemicals. However, we found the binding energy for H23R and C105R (mutation point) -7.8 and -7.6 kcal/mol, respectively. A single minima energy point (from 100 ns molecular dynamics simulation study) was found in the H23R mutant with Boeravinone J complex suggested that minimum structural changes with less conformational mobility compared C105A mutant model.Communicated by Ramaswamy H. Sarma.
蛋白质的功能与其结构特性密切相关。突变会影响蛋白质的功能。不同的癌症组织发现细胞周期蛋白依赖性激酶 2 相关蛋白 1(CDK2AP1)基因表达失调。蛋白质分子的构象灵活性会影响其在不同水平上与植物化学物质及其生物伴侣的相互作用。姜黄素因其抗癌等药用活性而被研究得最为广泛。它含有许多生物活性化合物,如姜黄素 A、姜黄素 B、姜黄素 C、姜黄素 D、姜黄素 E、姜黄素 F、姜黄素 G、姜黄素 H、姜黄素 I 和姜黄素 J。我们通过同源建模、对接和分子动力学模拟等计算方法,研究了从植物提取物中分离得到的生物活性化合物与 CDK2AP1 天然蛋白和突变蛋白的结合效力特性以及基本动力学行为、自由能景观。从分子对接研究中,我们发现与其他植物化学物质相比,Boeravinone J 对 CDKAP1 天然蛋白具有最佳的结合亲和力(-7.9 kcal/mol)。然而,我们发现 H23R 和 C105R(突变点)的结合能分别为-7.8 和-7.6 kcal/mol。在 H23R 突变体与 Boeravinone J 复合物的 100 ns 分子动力学模拟研究中,发现了一个单一的最小能量点,这表明与 C105A 突变模型相比,结构变化最小,构象迁移性较低。通讯作者为 Ramaswamy H. Sarma。