伴随蛋白
衣壳
生物
伴侣(临床)
病毒结构蛋白
病毒复制
泛素
病毒蛋白
蛋白酶体
细胞生物学
病毒学
病毒
蛋白质折叠
病毒进入
生物化学
基因
医学
病理
作者
Wei‐Ru Huang,Jyun‐Yi Li,Tsai‐Ling Liao,Chuan‐Ming Yeh,Chi-Young Wang,Hsiao‐Wei Wen,Nien‐Jen Hu,Yi-Ying Wu,Chao‐Yu Hsu,Yu-Kang Chang,Ching‐Dong Chang,Brent L. Nielsen,Hung‐Jen Liu
标识
DOI:10.1016/j.vetmic.2021.109277
摘要
Avian reoviruses (ARVs) are important pathogens that cause considerable economic losses in poultry farming. To date, host factors that control stabilization of ARV proteins remain largely unknown. In this work we determined that the eukaryotic chaperonin T-complex protein-1 (TCP-1) ring complex (TRiC) is essential for avian reovirus (ARV) replication by stabilizing outer-capsid protein σC, inner core protein σA, and the non-structural protein σNS of ARV. TriC serves as a chaperone of viral proteins and prevent their degradation via the ubiquitin-proteasome pathway. Furthermore, reciprocal co-immunoprecipitation assays confirmed the association of viral proteins (σA, σC, and σNS) with TRiC. Immunofluorescence staining indicated that the TRiC chaperonins (CCT2 and CCT5) are colocalized with viral proteins σC, σA, and σNS of ARV. In this study, inhibition of TRiC chaperonins (CCT2 and CCT5) by the inhibitor HSF1A or shRNAs significantly reduced expression levels of the σC, σA, and σNS proteins of ARV as well as virus yield, suggesting that the TRiC complex functions in stabilization of viral proteins and virus replication. This study provides novel insights into TRiC chaperonin governing virus replication via stabilization of outer-capsid protein σC, inner core protein σA, and the non-structural protein σNS of ARV.
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