Thioredoxin of Litopenaeus vannamei facilitated white spot syndrome virus infection

文献类型: 外文期刊

第一作者: Liu, Peng-fei

作者: Liu, Peng-fei;Liu, Qing-hui;Huang, Jie;Liu, Qing-hui;Huang, Jie;Liu, Peng-fei;Wu, Yin

作者机构:

关键词: Thioredoxin;WSSV;VP362;TK-TMK;Interaction

期刊名称:JOURNAL OF INVERTEBRATE PATHOLOGY ( 影响因子:2.841; 五年影响因子:3.368 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Thioredoxin (TRX), a major intracellular antioxidant, has a wide range of biological functions. It was up-regulated and targeted by WSSV. However, the relevance of TRX with WSSV infection and signaling pathway remains largely unknown. Sequence analysis indicated that TRX might interact with the WSSV030 (VP362) and WSSV454 (thymidine kinase-thymidylate kinase, TK-TMK) of WSSV. In this study, TRX, VP362 and TK-TMK were expressed and the interaction of TRX with VP362 or TK-TMK was investigated. Furthermore, how TRX affect the process of WSSV infection and the gene transcription of inhibitor of nuclear factor kappa-B kinase (IRK), a p38 mitogen-activated protein kinase (LvP38) and signal transducer and activator of transcription (STAT) in the hemocytes and hepatopancreas was explored. Far-western blot and enzyme-linked immuno assay (ELISA) results showed that TRX interacted with VP362 and TK-TMK. The mRNA expressions of IRK, LvP38 and STAT were significantly affected by the over-presence of TRX of Litopenaeus vannarnei. Neutralization experiment in vivo indicated that TRX induced the transcription expression of VP28 and increased the viral copy numbers in the early stage of WSSV infection and it may attribute to the death of shrimps infected by WSSV. (C) 2015 Elsevier Inc. All rights reserved.

分类号: Q959.1

  • 相关文献

[1]White spot syndrome virus VP51 interact with ribosomal protein L7 of Litopenaeus vannamei. Liu, Qing-hui,Ma, Fang-fang,Guan, Guang-Kuo,Wang, Xiu-Fang,Li, Chen,Huang, Jie,Liu, Qing-hui,Li, Chen,Huang, Jie,Ma, Fang-fang,Guan, Guang-Kuo,Wang, Xiu-Fang.

[2]Litopenaeus vannamei clathrin coat AP17 involved in white spot syndrome virus infection. Wang, Xiu-Fang,Liu, Qing-Hui,Huang, Jie,Wang, Xiu-Fang,Wu, Yin,Liu, Qing-Hui,Huang, Jie.

[3]Studies of the viral binding proteins of shrimp BP53, a receptor of white spot syndrome virus. Li, Chen,Gao, Xiao-Xiao,Huang, Jie,Liang, Yan.

[4]Cloning of Litopenaeus vannamei CD63 and it's role in white spot syndrome virus infection. Guan, Guang-Kuo,Liu, Qing-Hui,Li, Chen,Huang, Jie,Guan, Guang-Kuo,Liu, Qing-Hui,Huang, Jie.

[5]Thioredoxin of golden pompano involved in the immune response to Photobacterium damselae. Wang, Long,Guo, Huayang,Zhang, Nan,Ma, Zhenhua,Jiang, Shigui,Zhang, Dianchang,Wang, Long.

[6]A Point Mutation of Magnesium Chelatase OsCHLI Gene Dampens the Interaction Between CHLI and CHLD Subunits in Rice. Zhang, Huan,Liu, Linglong,Cai, Maohong,Zhao, Jieyu,Zheng, Tianhui,Xu, Xinyang,Zeng, Zhaoqiong,Niu, Jing,Jiang, Ling,Chen, Saihua,Wan, Jianmin,Zhu, Susong,Wan, Jianmin.

[7]Identification and characterization of lymph organ microRNAs in red swamp crayfish, Procambarus clarkii infected with white spot syndrome virus. Du, Zhi-Qiang,Leng, Xiao-Yun,Jin, Yan-Hui,Shen, Xiu-Li,Li, Xin-Cang. 2017

[8]Isolation of Prawn (Exopalaemon carinicauda) Lipopolysaccharide and beta-1, 3-Glucan Binding Protein Gene and Its Expression in Responding to Bacterial and Viral Infections. Ge Qianqian,Li Jitao,Sun Ming,Ge Qianqian,Li Jian,Sun Ming,Zhao Fazhen,Ge Qianqian,Li Jian,Sun Ming,Zhao Fazhen,Duan Yafei. 2016

[9]Expression profiles of the p38 MAPK signaling pathway from Chinese shrimp I Fenneropenaeus chinensis in response to viral and bacterial infections. He, Yuying,Liu, Ping,Li, Jian,Wang, Qingyin,He, Yuying,Li, Jian,Yao, Wanlong. 2018

[10]Bioassay evidence for the transmission of WSSV by the harpacticoid copepod Nitocra sp.. Zhang, Jia-Song,Dong, Shuang-Lin,Dong, Yun-Wei,Tian, Xiang-Li,Hou, Chun-Qiang,Zhang, Jia-Song. 2008

[11]Multiple proteins of White spot syndrome virus involved in recognition of beta-integrin. Zhang, Jing-Yan,Liu, Qing-Hui,Huang, Jie,Zhang, Jing-Yan.

[12]Virus-phytoplankton adhesion: a new WSSV transmission route to zooplankton. Mang Jiasong,Dong Shuanglin,Tian Xiangli,Dong Yunwei,Liu Xiangyi,Mang Jiasong,Liu Xiangyi,Yan Dongchun. 2007

[13]Relationship between white spot syndrome virus (WSSV) loads and characterizations of water quality in Litopenaeus vannamei culture ponds during the tropical storm. Zhang, J. S.,Li, Z. J.,Wen, G. L.,Luo, L.,Dong, H. B.,Wang, G. L.,Zhang, H. J.,Luo, L.. 2016

[14]A farnesoic acid O-methyltransferase (FAMeT) from Exopalaemon carinicauda is responsive to Vibrio anguillarum and WSSV challenge. Duan, Yafei,Liu, Ping,Li, Jitao,Li, Jian,Chen, Ping,Duan, Yafei,Wang, Yun.

[15]Sf-PHB2, A new transcription factor, Drives WSSV Ie1 Gene Expression via a 12-bp DNA Element. Ma, Guoda,Yu, Li,Wang, Qian,Ma, Guoda,Cui, Yudong,Liu, Wei,Kwang, Jimmy. 2012

[16]Efficiency of two fragments of VP28 against White Spot Syndrome Virus in Litopenaeus vannamei. Qiu, Zhi-guang,Liu, Qing-hui,Huang, Jie. 2012

[17]VP90 of white spot syndrome virus interacts with VP26 and VP28. Li, Qian,Liu, Qing-Hui,Huang, Jie,Li, Qian. 2012

[18]Cloning of Hsp21 gene and its expression in Chinese shrimp Fenneropenaeus chinensis in response to WSSV challenge. Gao, Huan,Lai, Xiaofang,Yan, Binlun,Gao, Huan,Kong, Jie,Wang, Weiji,Meng, Xianhong,Cai, Shengli. 2014

[19]Comparison of White Spot Syndrome Virus Infection Resistance Between Exopalaemon carinicauda and Litopenaeus vannamei Under Different Salinity Stresses. Ge Qianqian,Yu Ge,Sun Ming,Li Jitao,Li Jian,Ge Qianqian,Li Jitao,Li Jian. 2017

[20]Molecular cloning and expression analysis of Relish gene from the ridgetail white prawn Exopalaemon carinicauda. Ge, Qianqian,Ge, Qianqian,Li, Jitao,Li, Jian,Zhao, Fazhen,Ren, Hai,Liang, Junping,Duan, Yafei.

作者其他论文 更多>>