Subcellular Localization and Functional Characterization of GII.4 Norovirus-Encoded NTPase

被引:16
|
作者
Yen, Ju-Bei [1 ,2 ]
Wei, Ling-Huei [1 ]
Chen, Lee-Wen [3 ,4 ]
Chen, Li-Yu [1 ]
Hung, Chien-Hui [1 ]
Wang, Shie-Shan [4 ,5 ]
Chang, Pey-Jium [1 ,6 ]
机构
[1] Chang Gung Univ, Coll Med, Grad Inst Clin Med Sci, Taoyuan, Taiwan
[2] Chang Gung Mem Hosp, Dept Pediat, Chiayi, Taiwan
[3] Chang Gung Univ Sci & Technol, Dept Resp Care, Chiayi, Taiwan
[4] Chang Gung Mem Hosp, Dept Pediat Surg, Chiayi, Taiwan
[5] Chang Gung Univ, Coll Med, Sch Tradit Chinese Med, Taoyuan, Taiwan
[6] Chang Gung Mem Hosp, Dept Nephrol, Chiayi, Taiwan
关键词
norovirus; NTPase; mitochondria; Nterm; P22; apoptosis; NORWALK VIRUS-RNA; NONSTRUCTURAL PROTEIN; REPLICATION; EXPRESSION; COMPLEX; EVOLUTION; INFECTION; CELLS; HOST;
D O I
10.1128/JVI.01824-17
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The genotype II. 4 (GII.4) variants of human noroviruses (HuNVs) are recognized as the major agent of global gastroenteritis outbreaks. Due to the lack of an efficient cell culture system for HuNV propagation, the exact roles of HuNV-encoded nonstructural proteins (including Nterm, NTPase, P22, VPg, Pro, and RdRp) in viral replication or pathogenesis have not yet been fully understood. Here, we report the molecular characterization of the GII. 4 HuNV-encoded NTPase (designated GII-NTPase). Results from our studies showed that GII-NTPase forms vesicular or nonvesicular textures in the cell cytoplasm, and the nonvesicular fraction of GII-NTPase significantly localizes to the endoplasmic reticulum (ER) or mitochondria. Deletion analysis revealed that the N-terminal 179-amino-acid (aa) region of GII-NTPase is required for vesicle formation and for ER colocalization, whereas the C-terminal region is involved in mitochondrial colocalization. In particular, two mitochondrion-targeting domains were identified in the C-terminal region of GII-NTPase which perfectly colocalized with mitochondria when the N-terminal region of GII-NTPase was deleted. However, the corresponding C-terminal portions of NTPase derived from the GI HuNV did not show mitochondrial colocalization. We also found that GIINT-Pase physically interacts with itself as well as with Nterm and P22, but not VPg, Pro, and RdRp, in cells. The Nterm-and P22-interacting region was mapped to the N-terminal 179-aa region of GII-NTPase, whereas the self-assembly of GII-NTPase could be achieved via a head-to-head, tail-to-tail, or head-to-tail configuration. More importantly, we demonstrate that GII-NTPase possesses a proapoptotic activity, which can be further enhanced by coexpression with Nterm or P22. IMPORTANCE Despite the importance of human norovirus GII. 4 variants in global gastroenteritis outbreaks, the basic biological functions of the viral nonstructural proteins in cells remain rarely investigated. In this report, we focus our studies on characteristics of the GII. 4 norovirus-encoded NTPase (GII-NTPase). We unexpectedly find that GII-NTPase can perfectly colocalize with mitochondria after its N-terminal region is deleted. However, such a phenomenon is not observed for NTPase encoded by a GI strain. We further reveal that the N-terminal 179-aa region of GIINTPase is sufficient to mediate (i) vesicle formation, (ii) ER colocalization, (iii) the interaction with two other nonstructural proteins, including Nterm and P22, (iv) the formation of homodimers or homo-oligomers, and (v) the induction of cell apoptosis. Taken together, our findings emphasize that the virus-encoded NTPase must have multiple activities during viral replication or pathogenesis; however, these activities may vary somewhat among different genogroups.
引用
收藏
页数:21
相关论文
共 50 条
  • [41] Genetic analysis of norovirus GII.4 variants circulating in Korea in 2008
    Park, K. S.
    Jeong, H. S.
    Baek, K. A.
    Lee, C. G.
    Park, S. M.
    Park, J. S.
    Choi, Y. J.
    Choi, H. J.
    Cheon, D. S.
    ARCHIVES OF VIROLOGY, 2010, 155 (05) : 635 - 641
  • [42] Resilience of Norovirus GII.4 to Freezing and Thawing: Implications for Virus Infectivity
    Gary P. Richards
    Michael A. Watson
    Gloria K. Meade
    Gregory L. Hovan
    David H. Kingsley
    Food and Environmental Virology, 2012, 4 : 192 - 197
  • [43] Inactivation Effect of High Hydrostatic Pressure on GII.4 Norovirus in Oysters
    Tong L.
    Yang M.
    Zhao F.
    Su L.
    Wang S.
    Zhou D.
    Journal of Chinese Institute of Food Science and Technology, 2022, 22 (08): : 127 - 135
  • [44] Broadly neutralizing antibodies targeting pandemic GII.4 variants or seven GII genotypes of human norovirus
    Park, Juyeon
    Lindesmith, Lisa C.
    Olia, Adam S.
    Costantini, Veronica P.
    Brewer-Jensen, Paul D.
    Mallory, Michael L.
    Kelley, Cynthia E.
    Satterwhite, Ed
    Longo, Victoria
    Tsybovsky, Yaroslav
    Stephens, Tyler
    Marchioni, Jeffrey
    Martins, Christina A.
    Huang, Yimin
    Chaudhary, Ridhi
    Zweigart, Mark
    May, Samantha R.
    Reyes, Yaoska
    Flitter, Becca
    Vinje, Jan
    Tucker, Sean N.
    Ippolito, Gregory C.
    Lavinder, Jason J.
    Snijder, Joost
    Kwong, Peter D.
    Georgiou, George
    Baric, Ralph S.
    SCIENCE TRANSLATIONAL MEDICINE, 2025, 17 (788)
  • [45] Comparative Evolution of GII.3 and GII.4 Norovirus over a 31-Year Period
    Boon, Denali
    Mahar, Jackie E.
    Abente, Eugenio J.
    Kirkwood, Carl D.
    Purcell, Robert H.
    Kapikian, Albert Z.
    Green, Kim Y.
    Bok, Karin
    JOURNAL OF VIROLOGY, 2011, 85 (17) : 8656 - 8666
  • [46] Genetic Susceptibility to Norovirus GII.3 and GII.4 Infections in Chinese Pediatric Diarrheal Disease
    Liu, Pengbo
    Wang, Xiaoqin
    Lee, Joong-Chul
    Teunis, Peter
    Hu, Senke
    Paradise, Helen Tang
    Moe, Christine
    PEDIATRIC INFECTIOUS DISEASE JOURNAL, 2014, 33 (11) : E305 - E309
  • [47] Production, characterization and immunogenicity of P particles derived from norovirus GII.4 genotype 2004 variant
    Su, W.
    Gao, J.
    Zang, Y.
    Wu, H.
    Wang, L.
    Hu, H.
    Yu, X.
    Kong, W.
    Jiang, C.
    ACTA VIROLOGICA, 2015, 59 (01) : 33 - 39
  • [48] Immunogenicity and Blocking Efficacy of Norovirus GII.4 Recombinant P Protein Vaccine
    Yu, Zhendi
    Shao, Qingyi
    Xu, Zhangkai
    Chen, Chenghao
    Li, Mingfan
    Jiang, Yi
    Cheng, Dongqing
    VACCINES, 2023, 11 (06)
  • [49] Complete genome analysis of a novel norovirus GII.4 variant identified in China
    Xue, Liang
    Wu, Qingping
    Kou, Xiaoxia
    Cai, Weicheng
    Zhang, Jumei
    Guo, Weipeng
    VIRUS GENES, 2013, 47 (02) : 228 - 234
  • [50] Antigenic Relatedness of Norovirus GII.4 Variants Determined by Human Challenge Sera
    Dai, Ying-Chun
    Zhang, Xu-Fu
    Xia, Ming
    Tan, Ming
    Quigley, Christina
    Lei, Wen
    Fang, Hao
    Zhong, Weiming
    Lee, Bonita
    Pang, Xiaoli
    Nie, Jun
    Jiang, Xi
    PLOS ONE, 2015, 10 (04):