Narayanan Manoj M, Nair Chandrasekhar B, Sanjeeva Shilpa K, Rao Pv Subba, Pullela Phani K, Barrow Colin J
Centre for Chemistry and Biotechnology, Deakin University, Geelong, VIC, Australia ; Bigtec Pvt Ltd, Rajajinagar, Bangalore, India.
Adv Appl Bioinform Chem. 2013 Aug 19;6:47-53. doi: 10.2147/AABC.S49503. eCollection 2013.
Viral neuraminidase inhibitors such as oseltamivir and zanamivir prevent early virus multiplication by blocking sialic acid cleavage on host cells. These drugs are effective for the treatment of a variety of influenza subtypes, including swine flu (H1N1). The binding site for these drugs is well established and they were designed based on computational docking studies. We show here that some common natural products have moderate inhibitory activity for H1N1 neuraminidase under docking studies. Significantly, docking studies using AutoDock for biligand and triligand forms of these compounds (camphor, menthol, and methyl salicylate linked via methylene bridges) indicate that they may bind in combination with high affinity to the H1N1 neuraminidase active site. These results also indicate that chemically linked biligands and triligands of these natural products could provide a new class of drug leads for the prevention and treatment of influenza. This study also highlights the need for a multiligand docking algorithm to understand better the mode of action of natural products, wherein multiple active ingredients are present.
诸如奥司他韦和扎那米韦之类的病毒神经氨酸酶抑制剂通过阻断宿主细胞上的唾液酸裂解来防止病毒早期增殖。这些药物对包括猪流感(H1N1)在内的多种流感亚型的治疗有效。这些药物的结合位点已明确确立,并且它们是基于计算对接研究设计的。我们在此表明,一些常见的天然产物在对接研究中对H1N1神经氨酸酶具有中等抑制活性。重要的是,使用自动对接软件对这些化合物(通过亚甲基桥连接的樟脑、薄荷醇和水杨酸甲酯)的双配体和三配体形式进行对接研究表明,它们可能以高亲和力结合到H1N1神经氨酸酶活性位点。这些结果还表明,这些天然产物的化学连接双配体和三配体可为流感的预防和治疗提供一类新的药物先导物。本研究还强调了需要一种多配体对接算法,以便更好地理解存在多种活性成分的天然产物的作用模式。