Yu Dong-Shan, Wu Xiao-Xin, Weng Tian-Hao, Cheng Lin-Fang, Liu Fu-Min, Wu Hai-Bo, Lu Xiang-Yun, Wu Nan-Ping, Sun Shui-Lin, Yao Hang-Ping
State Key Laboratory for Diagnosis and Treatment of Infectious Diseases, National Clinical Research Center for Infectious Diseases, The First Affiliated Hospital Zhejiang University School of Medicine, Hangzhou, 310003, PR China.
Department of Infectious Disease, The Second Affiliated Hospital of Nanchang University, Nanchang, 330006, PR China.
Heliyon. 2024 Mar 19;10(7):e28218. doi: 10.1016/j.heliyon.2024.e28218. eCollection 2024 Apr 15.
Host-virus interactions can significantly impact the viral life cycle and pathogenesis; however, our understanding of the specific host factors involved in highly pathogenic avian influenza A virus H7N9 (HPAI H7N9) infection is currently restricted. Herein, we designed and synthesized 65 small interfering RNAs targeting host genes potentially associated with various aspects of RNA virus life cycles. Afterward, HPAI H7N9 viruses were isolated and RNA interference was used to screen for host factors likely to be involved in the life cycle of HPAI H7N9. Moreover, the research entailed assessing the associations between host proteins and HPAI H7N9 proteins. Twelve key host proteins were identified: Annexin A (ANXA)2, ANXA5, adaptor related protein complex 2 subunit sigma 1 (AP2S1), adaptor related protein complex 3 subunit sigma 1 (AP3S1), ATP synthase F1 subunit alpha (ATP5A1), COPI coat complex subunit alpha (COP)A, COPG1, heat shock protein family A (Hsp70) member 1A (HSPA)1A, HSPA8, heat shock protein 90 alpha family class A member 1 (HSP90AA1), RAB11B, and RAB18. Co-immunoprecipitation revealed intricate interactions between viral proteins (hemagglutinin, matrix 1 protein, neuraminidase, nucleoprotein, polymerase basic 1, and polymerase basic 2) and these host proteins, presumably playing a crucial role in modulating the life cycle of HPAI H7N9. Notably, ANXA5, AP2S1, AP3S1, ATP5A1, HSP90A1, and RAB18, were identified as novel interactors with HPAI H7N9 proteins rather than other influenza A viruses (IAVs). These findings underscore the significance of host-viral protein interactions in shaping the dynamics of HPAI H7N9 infection, while highlighting subtle variations compared with other IAVs. Deeper understanding of these interactions holds promise to advance disease treatment and prevention strategies.
宿主与病毒的相互作用会显著影响病毒的生命周期和发病机制;然而,目前我们对参与高致病性甲型H7N9禽流感病毒(HPAI H7N9)感染的特定宿主因子的了解仍然有限。在此,我们设计并合成了65种靶向宿主基因的小干扰RNA,这些宿主基因可能与RNA病毒生命周期的各个方面相关。随后,分离出HPAI H7N9病毒,并利用RNA干扰筛选可能参与HPAI H7N9生命周期的宿主因子。此外,该研究还评估了宿主蛋白与HPAI H7N9蛋白之间的关联。确定了12种关键宿主蛋白:膜联蛋白A(ANXA)2、ANXA5、衔接蛋白相关蛋白复合体2亚基西格玛1(AP2S1)、衔接蛋白相关蛋白复合体3亚基西格玛1(AP3S1)、ATP合酶F1亚基α(ATP5A1)、COP I被膜复合体亚基α(COP)A、COPG1、热休克蛋白家族A(Hsp70)成员1A(HSPA)1A、HSPA8、热休克蛋白90α家族A类成员1(HSP90AA1)、RAB11B和RAB18。免疫共沉淀揭示了病毒蛋白(血凝素、基质1蛋白、神经氨酸酶、核蛋白、聚合酶基本蛋白1和聚合酶基本蛋白2)与这些宿主蛋白之间的复杂相互作用,推测这些相互作用在调节HPAI H7N9的生命周期中起关键作用。值得注意的是,ANXA5、AP2S1、AP3S1、ATP5A1、HSP90A1和RAB18被确定为与HPAI H7N9蛋白而非其他甲型流感病毒(IAV)的新型相互作用分子。这些发现强调了宿主 - 病毒蛋白相互作用在塑造HPAI H7N9感染动态过程中的重要性,同时突出了与其他IAV相比的细微差异。对这些相互作用的更深入理解有望推动疾病治疗和预防策略的发展。