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KR-23502靶向乙型流感病毒核糖核蛋白核输出的抗病毒活性。

Antiviral activity of KR-23502 targeting nuclear export of influenza B virus ribonucleoproteins.

作者信息

Jang Yejin, Lee Hye Won, Shin Jin Soo, Go Yun Young, Kim Chonsaeng, Shin Daeho, Malpani Yashwardhan, Han Soo Bong, Jung Young-Sik, Kim Meehyein

机构信息

Center for Virus Research and Testing, Korea Research Institute of Chemical Technology, 141 Gajeongro, Yuseong, Daejeon 34114, Republic of Korea.

Center for Medicinal Chemistry, Korea Research Institute of Chemical Technology, 141 Gajeongro, Yuseong, Daejeon 34114, Republic of Korea.

出版信息

Antiviral Res. 2016 Oct;134:77-88. doi: 10.1016/j.antiviral.2016.07.024. Epub 2016 Aug 24.

Abstract

The spiro compound 5,6-dimethyl-3H,3'H-spiro(benzofuran-2,1'-isobenzofuran)-3,3'-dione (KR-23502) has antiviral activity against influenza A and more potently B viruses. The aim of this study is to elucidate its mechanism of action. Subcellular localization and time-course expression of influenza B viral proteins, nucleoprotein (NP) and matrix protein 1 (M1), showed that KR-23502 reduced their amounts within 5 h post-infection. Early steps of virus life cycle, including virus entry, nuclear localization of NP and viral RNA-dependent RNA replication, were not affected by KR-23502. Instead it interrupted a later event corresponding to nuclear export of NP and M1 proteins. Delivery of viral ribonucleoprotein (vRNP)-M1 complex has been known to be mediated by the viral nuclear export protein (NEP) through interaction with cellular chromosomal maintenance 1 (CRM1) protein. In this study, we experimentally demonstrated that the compound targets the nuclear export of vRNP. Moreover, a single mutation (aspartate to glycine) at amino acid position 54 in M1 [M1(D54G)] was detected after 18 passages in the presence of KR-23502 with a 2-fold increase in 50% effective concentration indicating that this compound has a relatively high genetic barrier to resistance. Interestingly, it was observed that proteasome-mediated degradation of M1(D54G) was attenuated by KR-23502. In conclusion, we suggest that KR-23502 shows its anti-influenza activity by downregulating NEP/CRM1-mediated nuclear export of influenza vRNP and M1. KR-23502 provides a core chemical skeleton for further structure-based design of novel antivirals against influenza viruses.

摘要

螺环化合物5,6-二甲基-3H,3'H-螺(苯并呋喃-2,1'-异苯并呋喃)-3,3'-二酮(KR-23502)对甲型流感病毒具有抗病毒活性,对乙型流感病毒的活性更强。本研究的目的是阐明其作用机制。对乙型流感病毒蛋白、核蛋白(NP)和基质蛋白1(M1)的亚细胞定位和时间进程表达研究表明,KR-23502在感染后5小时内降低了它们的含量。病毒生命周期的早期步骤,包括病毒进入、NP的核定位和病毒RNA依赖性RNA复制,均不受KR-23502的影响。相反,它中断了与NP和M1蛋白核输出相对应的后期事件。已知病毒核糖核蛋白(vRNP)-M1复合物的转运是由病毒核输出蛋白(NEP)通过与细胞染色体维持蛋白1(CRM1)相互作用介导的。在本研究中,我们通过实验证明该化合物靶向vRNP的核输出。此外,在存在KR-23502的情况下传代18次后,检测到M1中氨基酸位置54处的单个突变(天冬氨酸突变为甘氨酸)[M1(D54G)],其50%有效浓度增加了2倍,表明该化合物具有相对较高的耐药遗传屏障。有趣的是,观察到KR-23502减弱了蛋白酶体介导的M1(D54G)降解。总之,我们认为KR-23502通过下调NEP/CRM1介导的流感病毒vRNP和M1的核输出而显示其抗流感活性。KR-23502为进一步基于结构设计新型抗流感病毒药物提供了核心化学骨架。

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