Salim Nilshad N, Ganaie Safder S, Roy Anuradha, Jeeva Subbiah, Mir Mohammad A
From the Kansas University Medical Center, Kansas City, Kansas 66160.
the University of Kansas, Lawrence, Kansas 66045, and.
J Biol Chem. 2016 Nov 18;291(47):24702-24714. doi: 10.1074/jbc.M116.750729. Epub 2016 Oct 12.
An evolutionarily conserved sequence at the 5' terminus of hantaviral genomic RNA plays an important role in viral transcription initiation and packaging of the viral genome into viral nucleocapsids. Interaction of viral nucleocapsid protein (N) with this conserved sequence facilitates mRNA translation by a unique N-mediated translation strategy. Whereas this evolutionarily conserved sequence facilitates virus replication with the assistance of N in eukaryotic hosts having multifaceted antiviral defense, we demonstrate its interaction with N presents a novel target for therapeutic intervention of hantavirus disease. Using a high throughput screening approach, we identified three lead inhibitors that bind and induce structural perturbations in N. The inhibitors interrupt N-RNA interaction and abrogate both viral genomic RNA synthesis and N-mediated translation strategy without affecting the canonical translation machinery of the host cell. The inhibitors are well tolerated by cells and inhibit hantavirus replication with the same potency as ribavarin, a commercially available antiviral. We report the identification of a unique chemical scaffold that disrupts a critical RNA-protein interaction in hantaviruses and holds promise for the development of the first anti-hantaviral therapeutic with broad spectrum antiviral activity.
汉坦病毒基因组RNA 5'末端的一个进化保守序列在病毒转录起始以及将病毒基因组包装到病毒核衣壳中发挥重要作用。病毒核衣壳蛋白(N)与该保守序列的相互作用通过独特的N介导翻译策略促进mRNA翻译。尽管这个进化保守序列在具有多方面抗病毒防御的真核宿主中借助N促进病毒复制,但我们证明其与N的相互作用为汉坦病毒病的治疗干预提供了一个新靶点。通过高通量筛选方法,我们鉴定出三种先导抑制剂,它们能与N结合并诱导N的结构扰动。这些抑制剂中断N-RNA相互作用,消除病毒基因组RNA合成以及N介导的翻译策略,而不影响宿主细胞的经典翻译机制。这些抑制剂细胞耐受性良好,并且与市售抗病毒药物利巴韦林具有相同效力地抑制汉坦病毒复制。我们报告鉴定出一种独特的化学支架,它能破坏汉坦病毒中一种关键的RNA-蛋白质相互作用,并有望开发出首个具有广谱抗病毒活性的抗汉坦病毒治疗药物。