Sekhar Kuruva Chandra, Janardhan Avilala, Kumar Yellapu Nanda, Narasimha Golla, Raju Chamarthi Naga, Ghosh S K
Department of Chemistry, Sri Venkateswara University, Tirupati, 517502, India.
Appl Biochem Biotechnol. 2014 Jul;173(6):1303-18. doi: 10.1007/s12010-014-0929-8. Epub 2014 May 2.
Owing to the promising antiviral activity of amino acid ester-substituted phosphorylated nucleosides in the present study, a series of phosphorylated derivatives of emtricitabine and didanosine substituted with bioactive amino acid esters at P-atom were synthesized. Initially, molecular docking studies were screened to predict their molecular interactions with hemagglutinin-neuraminidase protein of Newcastle disease virus and E2 protein of human papillomavirus. The title compounds were screened for their antiviral ability against Newcastle disease virus (NDV) by their in ovo study in embryonated chicken eggs. Compounds 5g and 9c exposed well mode of interactions with HN protein and also exhibited potential growth of NDV inhibition. The remaining compounds exhibited better growth of NDV inhibition than their parent molecules, i.e., emtricitabine (FTC) and didanosine (ddI). In addition, the in vitro anticancer activity of all the title compounds were screenedagainst HeLa cell lines at 10 and 100 μg/mL concentrations. The compounds 5g and 9c showed an effective anticancer activity than that of the remaining title compounds with IC50 values of 40 and 60 μg/mL, respectively. The present in silico and in ovo antiviral and in vitro anticancer results of the title compounds are suggesting that the amino acid ester-substituted phosphorylated FTC and ddI derivatives, especially 5g and 9c, can be used as NDV inhibitors and anticancer agents for the control and management of viral diseases with cancerous condition.
由于本研究中氨基酸酯取代的磷酸化核苷具有良好的抗病毒活性,合成了一系列在磷原子上被生物活性氨基酸酯取代的恩曲他滨和去羟肌苷的磷酸化衍生物。最初,通过分子对接研究来预测它们与新城疫病毒血凝素神经氨酸酶蛋白和人乳头瘤病毒E2蛋白的分子相互作用。通过在鸡胚中进行的卵内研究,筛选标题化合物对新城疫病毒(NDV)的抗病毒能力。化合物5g和9c与HN蛋白呈现良好的相互作用模式,并且还表现出对NDV抑制的潜在作用。其余化合物对NDV抑制的作用比其母体分子,即恩曲他滨(FTC)和去羟肌苷(ddI)更好。此外,在10和100μg/mL浓度下,筛选了所有标题化合物对HeLa细胞系的体外抗癌活性。化合物5g和9c比其余标题化合物表现出更有效的抗癌活性,其IC50值分别为40和60μg/mL。标题化合物目前的计算机模拟和卵内抗病毒以及体外抗癌结果表明,氨基酸酯取代的磷酸化FTC和ddI衍生物,尤其是5g和9c,可作为NDV抑制剂和抗癌剂用于控制和管理伴有癌症状况的病毒性疾病。