化学
色氨酸
核蛋白
荧光
猝灭(荧光)
病毒
甲型流感病毒
抗病毒药物
药物发现
重组DNA
药品
构象变化
小分子
病毒学
生物物理学
生物化学
药理学
基因
氨基酸
生物
物理
量子力学
作者
Hui‐Chen Hung,Chia‐Lin Liu,John Hsu,Jim‐Tong Horng,Mingyu Fang,Su‐Ying Wu,Shau‐Hua Ueng,Min-Ying Wang,Cheng-Wen Yaw,Ming‐Hon Hou
摘要
Recent studies have shown that NP (nucleoprotein), which possesses multiple functions in the viral life cycle, is a new potential anti-influenza drug target. NP inhibitors reliably induce conformational changes in NPs, and these changes may confer inhibition of the influenza virus. The six conserved tryptophan residues in NP can be used as an intrinsic probe to monitor the change in fluorescence of the tryptophan residues in the protein upon binding to an NP inhibitor. In the present study, we found that the fluorescence of recombinant NP proteins was quenched following the binding of available NP inhibitors (such as nucleozin) in a concentration- and time-dependent manner, which suggests that the inhibitor induced conformational changes in the NPs. The minimal fluorescence-quenching effect and weak binding constant of nucleozin to the swine-origin influenza virus H1N1pdm09 (SOIV) NP revealed that the SOIV is resistant to nucleozin. We have used the fluorescence-quenching property of tryptophans in NPs that were bound to ligands in a 96-well-plate-based drug screen to assess the ability of promising small molecules to interact with NPs and have identified one new anti-influenza drug, CSV0C001018, with a high SI value. This convenient method for drug screening may facilitate the development of antiviral drugs that target viruses other than the influenza virus, such as HIV and HBV.
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