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宿主特异性 SRSF7 调节甲型流感病毒的聚合酶活性和复制。

Host-specific SRSF7 regulates polymerase activity and replication of influenza A virus.

机构信息

MOE Joint International Research Laboratory of Animal Health and Food Safety, Engineering Laboratory of Animal Immunity of Jiangsu Province, College of Veterinary Medicine, Nanjing Agricultural University, Nanjing, 210095, China.

Xinjiang Key Laboratory of Animal Infectious Diseases, Institute of Veterinary Medicine, Xinjiang Academy of Animal Sciences, Urumqi, 830013, China.

出版信息

Microbes Infect. 2024 Nov-Dec;26(8):105401. doi: 10.1016/j.micinf.2024.105401. Epub 2024 Aug 10.

Abstract

Avian influenza viruses crossing the host barrier to infect humans have caused great panic in human society and seriously threatened public health. Herein, we revealed that knockdown of SRSF7 significantly down-regulated influenza virus titers and viral protein expression. We further observed for the first time that human SRSF7, but not avian SRSF7, significantly inhibited polymerase activity (PB2E). Molecular mapping demonstrated that amino acids 206 to 228 of human SRSF7 play a decisive role in regulating the polymerase activity, which contains the amino acid motif absent in avian SRSF7. Importantly, our results illustrated that the PB2K-encoding influenza virus induces SRSF7 protein degradation more strongly via the lysosome pathway and not via the proteasome pathway. Functional enrichment analysis of SRSF7-related KEGG pathways indicated that SRSF7 is closely related to cell growth and death. Lastly, our results showed that knocking down SRSF7 interferes with normal polymerase activity. Taken together, our results advance our understanding of interspecies transmission and our findings point out new targets for the development of drugs preventing or treating influenza virus infection.

摘要

禽流感病毒跨越宿主屏障感染人类,在人类社会引起极大恐慌,严重威胁公共健康。在此,我们揭示了敲低 SRSF7 显著下调了流感病毒滴度和病毒蛋白表达。我们还首次观察到,人源 SRSF7 而非禽源 SRSF7 显著抑制聚合酶活性(PB2E)。分子作图表明,人源 SRSF7 的 206 至 228 位氨基酸在调节聚合酶活性方面起着决定性作用,其中包含禽源 SRSF7 中不存在的氨基酸基序。重要的是,我们的结果表明,PB2K 编码的流感病毒通过溶酶体途径而不是蛋白酶体途径诱导 SRSF7 蛋白降解更强。SRSF7 相关 KEGG 途径的功能富集分析表明,SRSF7 与细胞生长和死亡密切相关。最后,我们的结果表明,敲低 SRSF7 会干扰正常的聚合酶活性。综上所述,我们的研究结果增进了我们对种间传播的理解,我们的发现为开发预防或治疗流感病毒感染的药物提供了新的靶点。

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