核蛋白
病毒
磷蛋白
生物
核糖核蛋白
病毒学
病毒复制
细胞生物学
单反病毒
免疫沉淀
核糖核酸
副粘病毒科
病毒进入
寄主(生物学)
化学
呼吸系统
寄主因子
蛋白质亚单位
聚合酶
马尔堡病毒
RNA沉默
微尺度热泳
合胞体
肺病毒科
溶解循环
伴侣(临床)
五聚体
HEK 293细胞
作者
Haiwu Zhou,Mingbin He,Jifu Du,Cong Liu,Shiyu Sun,Yuewen Han,Zhifei Li,Yali Qin,Mingzhou Chen
标识
DOI:10.1002/advs.202508811
摘要
Abstract Nucleoproteins (N) of negative‐sense RNA viruses exhibit an inherent tendency to oligomerize, forming a ribonucleoprotein complex that protects the viral genome. Here, immunoprecipitation coupled with mass spectrometry is used to identify zinc ribbon domain containing 2 (ZNRD2) as a host interactor for the respiratory syncytial virus (RSV) N protein. The results demonstrated that ZNRD2 functions as a restriction factor against RSV by enhancing the oligomerization and insolubility of N. Conversely, RSV N sequesters ZNRD2 into an insoluble aggregate, rendering it incapable of performing physiological functions required for the quality control of chaperonin assembly. Notably, RSV phosphoprotein (P) completely inhibited the formation of the insoluble ZNRD2‐RSV N complex by maintaining N in a monomeric conformation. RSV infection induces a fluctuation in the solubility of ZNRD2, indicating a dynamic interaction between the host protein and the virus. These results reveal a dual antagonistic mechanism, whereby the host uses ZNRD2 to restrain RSV infection by aggregating with N, whereas the virus undermines ZNRD2's physiological functions. This study advances the molecular understanding of virus‐host interactions and may provide insights into the development of novel antiviral strategies against RSV.
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