Molecular Interaction Study between Gentamicin and the Cancer Protein Target (TP53) using in silico Tools

Priyadharshini M., D. Leelavathi, Tanzeem Azeeza S.
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引用次数: 0

Abstract

The most prevalent mutation in hepatocellular carcinoma (HCC), TP53 mutations impacts the course and prognosis of HCC. 3D in silico drug docking techniques were employed to make the possible mutant target tumor protein 53 (TP53) interact with benzene acetic acid (Gentamicin) and non-steroidal anti-inflammatory drugs (NSAIDs). To carry out drug docking techniques, the translated amino acid sequence and three-dimensional chemical compound were obtained from the NCBI database. The use of sophisticated 3D molecular visualization tools was employed in post-docking experiments. The docking study results unequivocally show that gentamicin directly suppresses amino acid mutational sites. TP53 and Gentamicin's electrostatic force is depicted in a three-dimensional manner using notions from molecular dynamics techniques. In the end, it was determined that gentamicin, an Antibiotic medication, helps treat liver cancer. Most chemotherapy medications cause pain. Therefore, Gentamicin shall be used to lessen discomfort while minimizing the symptoms of cancer.
利用硅学工具研究庆大霉素与癌症蛋白靶标(TP53)之间的分子相互作用
TP53突变是肝细胞癌(HCC)中最常见的突变,它影响着HCC的病程和预后。为了使可能的突变靶肿瘤蛋白53(TP53)与苯乙酸(庆大霉素)和非甾体抗炎药(NSAIDs)相互作用,研究人员采用了三维硅学药物对接技术。为了开展药物对接技术,我们从 NCBI 数据库中获得了翻译后的氨基酸序列和三维化合物。在对接后实验中使用了复杂的三维分子可视化工具。对接研究结果明确显示,庆大霉素能直接抑制氨基酸突变位点。利用分子动力学技术的概念,TP53 和庆大霉素的静电力被三维描绘出来。最终确定庆大霉素这种抗生素药物有助于治疗肝癌。大多数化疗药物都会引起疼痛。因此,庆大霉素应在减轻癌症症状的同时减轻不适感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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