Phyllanthus niruri 植物化学物质与乙型肝炎 DNA 聚合酶的分子对接研究。

Journal of The American Dietetic Association Pub Date : 2015-09-30 eCollection Date: 2015-01-01 DOI:10.6026/97320630011426
Mekha Mohan, Priyanka James, Ravisankar Valsalan, Puthiyaveetil Abdulla Nazeem
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引用次数: 0

摘要

乙型肝炎病毒(HBV)感染是肝脏疾病的主要病因,可导致肝细胞癌、肝硬化和肝损伤,进而导致患者死亡。HBV DNA 聚合酶对 HBV 在宿主体内的复制至关重要,因此被用作抑制 HBV 的最有效药理靶点之一。慢性乙型肝炎目前使用抑制病毒逆转录酶活性的核苷酸类似物进行治疗,但据报道,大多数类似物都会产生病毒耐药性。因此,建立 HBV DNA 聚合酶与已知植物化学物质对接的模型很有意义。本研究使用 Discovery studio 4.0 软件对传统解毒剂 Phyllanthus niruri 和其他核苷类似物中的植物化合物与 HBV DNA 聚合酶进行同源建模和分子对接分析。根据之前报道的配位预测了 HBV DNA 聚合酶的三维结构。Docking 研究表明,Phyllanthus niruri 中的一些植物化学物质与 HBV DNA 聚合酶有良好的相互作用。这些化合物具有可接受的结合特性,可用于进一步的体外验证。因此,该研究为传统解毒剂提供了实验验证,这些植物化合物可作为潜在的先导分子进一步推广。
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Molecular docking studies of phytochemicals from Phyllanthus niruri against Hepatitis B DNA Polymerase.

Hepatitis B virus (HBV) infection is the leading cause for liver disorders and can lead to hepatocellular carcinoma, cirrhosis and liver damage which in turn can cause death of patients. HBV DNA Polymerase is essential for HBV replication in the host and hence is used as one of the most potent pharmacological target for the inhibition of HBV. Chronic hepatitis B is currently treated with nucleotide analogues that suppress viral reverse transcriptase activity and most of them are reported to have viral resistance. Therefore, it is of interest to model HBV DNA polymerase to dock known phytochemicals. The present study focuses on homology modeling and molecular docking analysis of phytocompounds from the traditional antidote Phyllanthus niruri and other nucleoside analogues against HBV DNA Polymerase using the software Discovery studio 4.0. 3D structure of HBV DNA Polymerase was predicted based on previously reported alignment. Docking studies revealed that a few phytochemicals from Phyllanthus niruri had good interactions with HBV DNA Polymerase. These compounds had acceptable binding properties for further in vitro validation. Thus the study puts forth experimental validation for traditional antidote and these phytocompounds could be further promoted as potential lead molecule.

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