Alios BioPharma, Inc., South San Francisco, California, United States of America.
PLoS One. 2013 Jul 10;8(7):e68347. doi: 10.1371/journal.pone.0068347. Print 2013.
T-705 (Favipiravir) is a broad-spectrum antiviral molecule currently in late stage clinical development for the treatment of influenza virus infection. Although it is believed that T-705 potency is mediated by its ribofuranosyl triphosphate (T-705 RTP) metabolite that could be mutagenic, the exact molecular interaction with the polymerase of influenza A virus (IAVpol) has not been elucidated. Here, we developed a biochemical assay to measure the kinetics of nucleotide incorporation by IAVpol in the elongation mode. In this assay, T-705 RTP was recognized by IAVpol as an efficient substrate for incorporation to the RNA both as a guanosine and an adenosine analog. Compared to natural GTP and ATP, the discrimination of T-705 RTP was about 19- and 30-fold, respectively. Although the single incorporation of the ribonucleotide monophosphate form of T-705 did not efficiently block RNA synthesis, two consecutive incorporation events prevented further primer extension. In comparison, 3'-deoxy GTP caused immediate chain termination but was incorporated less efficiently by the enzyme, with a discrimination of 4,900-fold relative to natural GTP. Collectively, these results provide the first detailed biochemical characterization to evaluate the substrate efficiency and the inhibition potency of nucleotide analogs against influenza virus polymerase. The combination of ambiguous base-pairing with low discrimination of T-705 RTP provides a mechanistic basis for the in vitro mutagenic effect of T-705 towards influenza virus.
T-705(法匹拉韦)是一种广谱抗病毒药物,目前处于治疗流感病毒感染的后期临床开发阶段。尽管人们认为 T-705 的效力是通过其核糖呋喃三磷酸(T-705 RTP)代谢物介导的,而这种代谢物可能具有诱变作用,但 T-705 与甲型流感病毒(IAVpol)聚合酶的确切分子相互作用尚未阐明。在这里,我们开发了一种生化测定法来测量 IAVpol 在延伸模式下掺入核苷酸的动力学。在该测定法中,T-705 RTP 被 IAVpol 识别为掺入 RNA 的有效底物,可作为鸟嘌呤和腺嘌呤类似物。与天然 GTP 和 ATP 相比,T-705 RTP 的区分度分别约为 19 倍和 30 倍。尽管 T-705 核糖核苷酸单磷酸形式的单次掺入不能有效地阻止 RNA 合成,但两个连续的掺入事件阻止了进一步的引物延伸。相比之下,3'-脱氧 GTP 会立即导致链终止,但酶的掺入效率较低,与天然 GTP 的区分度为 4900 倍。总的来说,这些结果提供了第一个详细的生化特征描述,用于评估核苷酸类似物对流感病毒聚合酶的底物效率和抑制效力。T-705 RTP 与低区分度的不明确碱基配对为 T-705 在体外对流感病毒的诱变作用提供了一种机制基础。