Institute of Molecular Biology and Biotechnology (IMBB), University of Lahore (UOL), Lahore, Pakistan.
Department of Biomedical Engineering, UET Lahore, Narowal campus, Narowal, Pakistan.
Sci Rep. 2022 Sep 19;12(1):15648. doi: 10.1038/s41598-022-19854-6.
Many PTMs dysregulation is known to be the major cause of many cancers including HCV induced HCC. PTMs of hepatitis C virus (HCV) regions NS3/4A, NS5A and NS5B are crucial for proper protein functions and replication that directly affect the generation of infectious virus particles and completion of its life cycle. In this study, we have performed comprehensive analysis of PTMs within HCV non-structural proteins (NS3/4A, NS5A and NS5B) through bioinformatics analysis to examine post-translational crosstalk between phosphorylation, palmitoylation, methylation, acetylation and ubiquitination sites in selected viral proteins. Our analysis has revealed many highly putative PTMs sites that are also conserved among major genotypes conferring the importance of these sites. We have also analysed viral 3D structures in their modified and unmodified forms to address extent and signatures of structural changes upon PTM. This study provides evidence that PTMs induce significant conformational changes and make viral proteins more stable. To find the potential role of PTMs in HCV induced HCC, docking analysis between selected viral proteins and p38-MAPK has been performed which also confirms their strong association with HCV induced HCC. The major findings proposed that PTMs at specific sites of HCV viral proteins could dysregulate specific pathways that cause the development of HCC.
许多翻译后修饰(PTMs)的失调被认为是许多癌症(包括 HCV 引起的 HCC)的主要原因。丙型肝炎病毒(HCV)区域 NS3/4A、NS5A 和 NS5B 的 PTMs 对于适当的蛋白质功能和复制至关重要,这些功能和复制直接影响感染性病毒颗粒的产生和其生命周期的完成。在这项研究中,我们通过生物信息学分析对 HCV 非结构蛋白(NS3/4A、NS5A 和 NS5B)中的 PTMs 进行了全面分析,以检查磷酸化、棕榈酰化、甲基化、乙酰化和泛素化位点之间的翻译后串扰在选定的病毒蛋白中。我们的分析揭示了许多高度假定的 PTM 位点,这些位点在主要基因型中也是保守的,赋予了这些位点的重要性。我们还分析了修饰和未修饰形式的病毒 3D 结构,以解决 PTM 对结构变化的程度和特征。这项研究提供了证据表明 PTMs 会引起显著的构象变化,使病毒蛋白更加稳定。为了研究 PTMs 在 HCV 诱导的 HCC 中的潜在作用,我们对选定的病毒蛋白和 p38-MAPK 之间进行了对接分析,这也证实了它们与 HCV 诱导的 HCC 之间的强烈关联。主要发现表明,HCV 病毒蛋白特定位点的 PTMs 可能会失调导致 HCC 发展的特定途径。