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Splicing factor SF3B3,a NS5-binding protein,restricts ZIKV infection by targeting GCH1
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作者 Tanxiu Chen Hao Yang +13 位作者 Penghui Liu Moliduer Hamiti Xintian Zhang Yi Xu Wenqi Quan Yong Zhang Wenhai Yu Li Jiao Tingfu Du Juemin Xi Bin Yin Wei Zhou Shuaiyao Lu Xiaozhong Peng 《Virologica Sinica》 SCIE CAS CSCD 2023年第2期222-232,共11页
Zika virus(ZIKV),a positive-sense single-stranded RNA virus,causes congenital ZIKV syndrome in children and Guillain-Barre Syndrome(GBS)in adults.ZIKV expresses nonstructural protein 5(NS5),a large protein that is ess... Zika virus(ZIKV),a positive-sense single-stranded RNA virus,causes congenital ZIKV syndrome in children and Guillain-Barre Syndrome(GBS)in adults.ZIKV expresses nonstructural protein 5(NS5),a large protein that is essential for viral replication.ZIKV NS5 confers the ability to evade interferon(IFN)signalling;however,the exact mechanism remains unclear.In this study,we employed affinity pull-down and liquid chromatography-tandem mass spectrometry(LC-MS/MS)analyses and found that splicing factor 3b subunit 3(SF3B3)is associated with the NS5-Flag pull-down complex through interaction with NS5.Functional assays showed that SF3B3 overexpression inhibited ZIKV replication by promoting IFN-stimulated gene(ISG)expression whereas silencing of SF3B3 inhibited expression of ISGs to promote ZIKV replication.GTP cyclohydrolase I(GCH1)is the first and ratelimiting enzyme in tetrahydrobiopterin(BH4)biosynthesis.NS5 upregulates the expression of GCH1 during ZIKV infection.And GCH1 marginally promoted ZIKV replication via the IFN pathway.Additionally,GCH1 expression is related to the regulation of SF3B3.Overexpression of the SF3B3 protein effectively reduced GCH1 protein levels,whereas SF3B3 knockdown increased its levels.These findings indicated that ZIKV NS5 binding protein SF3B3 contributed to the host immune response against ZIKV replication by modulating the expression of GCH1. 展开更多
关键词 Nonstructural protein 5(ns5) Splicing factor 3b subunit 3(SF3B3) GTP cyclohydrolase I(GCH1) IFN-stimulated gene(ISGs) IFN signalling Pathway
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猪瘟病毒NS2、NS3和NS5A与猪Rab25蛋白的亚细胞定位分析
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作者 徐盼盼 侯玉凤 +3 位作者 王凯 罗弼豪 范昱鑫 郭抗抗 《中国兽医学报》 CAS CSCD 北大核心 2020年第4期673-680,共8页
为了研究NS5A与Rab25的亚细胞定位及作用基因区段,先构建pDsRed1-N1-Rab25红光载体,利用经过改造并加GFP的pcDNA3.1(+)-NS2、pcDNA3.1(+)-NS3和pcDNA3.1(+)-NS5A载体,将pDsRedN1-Rab25红光载体与这3种绿光载体分别共转染于猪血管内皮细... 为了研究NS5A与Rab25的亚细胞定位及作用基因区段,先构建pDsRed1-N1-Rab25红光载体,利用经过改造并加GFP的pcDNA3.1(+)-NS2、pcDNA3.1(+)-NS3和pcDNA3.1(+)-NS5A载体,将pDsRedN1-Rab25红光载体与这3种绿光载体分别共转染于猪血管内皮细胞(SUVEC),通过共聚焦显微镜观察显示Rab25和NS2、NS3共定位现象不明显而与NS5A存在着明显共定位。为了进一步研究NS5A与Rab25作用基因区段,构建NS5A的3个分段基因载体:pEGFP-C1-NS5A-1-84、pEGFP-C1-NS5A-84-804和pEGFP-C1-NS5A-804-1491,转染SUVEC并观察共定位情况,结果显示Rab25与NS5A的804~1491 bp存在明显共定位,而与1~84,84~804 bp的共定位现象不明显。结果说明Rab25与NS5A基因的804~1491 bp存在共定位,这为继续研究Rab25与NS5A的关键作用位点及互作奠定基础。 展开更多
关键词 猪瘟病毒 非结构蛋白5A(ns5A) 猪血管内皮细胞(SUVEC) Rab25蛋白 亚细胞定位
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Non-Structural Protein 5 of Zika Virus Interacts with p53 in Human Neural Progenitor Cells and Induces p53-Mediated Apoptosis 被引量:2
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作者 Ping Li Hualian Jiang +8 位作者 Hong Peng Weijie Zeng Yongheng Zhong Miao He Luyang Xie Junhai Chen Deyin Guo Junyu Wu Chun-Mei Li 《Virologica Sinica》 SCIE CAS CSCD 2021年第6期1411-1420,共10页
Zika virus(ZIKV) infection could disrupt neurogenesis and cause microcephaly in neonates by targeting neural progenitor cells(NPCs). The tumor suppressor p53-mediated cell cycle arrest and apoptotic cell death have be... Zika virus(ZIKV) infection could disrupt neurogenesis and cause microcephaly in neonates by targeting neural progenitor cells(NPCs). The tumor suppressor p53-mediated cell cycle arrest and apoptotic cell death have been suggested to be activated upon ZIKV infection, yet the detailed mechanism is not well understood. In the present study, we investigated the effects of ZIKV-encoded proteins in the activation of p53 signaling pathway and found that, among the ten viral proteins,the nonstructural protein 5(NS5) of ZIKV most significantly activated the transcription of p53 target genes. Using the immunoprecipitation-coupled mass spectrometry approach, we identified that ZIKV-NS5 interacted with p53 protein. The NS5-p53 interaction was further confirmed by co-immunoprecipitation and GST pull-down assays. In addition, the MTase domain of NS5 and the C-terminal domain of p53 were mapped to be responsible for the interaction between these two proteins. We further showed that ZIKV-NS5 was colocalized with p53 and increased its protein level in the nuclei and able to prolong the half-life of p53. Furthermore, lentivirus-mediated expression of ZIKV-NS5 in hNPCs led to an apparent cell death phenotype. ZIKV-NS5 promoted the cleavage of PARP1 and significantly increased the cell apoptosis of h NPCs.Taken together, these findings revealed that ZIKV-NS5 is a previously undiscovered regulator of p53-mediated apoptosis in hNPCs, which may contribute to the ZIKV-caused abnormal neurodevelopment. 展开更多
关键词 Zika virus(ZIKV) Nonstructural protein 5(ns5) P53 APOPTOSIS Human neural progenitor cells(hNPCs)
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