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Polypyrimidine Tract-Binding Protein Enhances Zika Virus Translation by Binding to the 5'UTR of Internal Ribosomal Entry Site
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作者 Moliduer Hamiti Xin-Tian Zhang +4 位作者 Rui-Min Zhu Yun-Peng Liu Bin Yin Peng-Cheng Shu Xiao-Zhong Peng 《Chinese Medical Sciences Journal》 CAS CSCD 2024年第3期163-172,共10页
Objectives To identify the 5'untranslated region of Zika virus(ZIKV 5'UTR)RNA-binding proteins and to investigate the impact of the binding protein on the activity of internal ribosomal entry site(IRES)located... Objectives To identify the 5'untranslated region of Zika virus(ZIKV 5'UTR)RNA-binding proteins and to investigate the impact of the binding protein on the activity of internal ribosomal entry site(IRES)located in ZIKV 5'UTR and virus production.Methods Interacting proteins in U251 cells were captured using tRSA-tagged ZIKV 5'UTR RNA and tRSA-ZIKV 5'UTR RNA-binding proteins were visualized by SDS-PAGE silver staining,Subsequently,liquid chromatographytandem mass spectrometry(LC-MS/MS),bioinformatics analysis,and Western blot were used to identify the candidate proteins binding to ZIKV 5'UTR.Dicistronic expression assay and plaque forming assay were performed to analyze the effect of the binding protein on ZIKV IRES activity and ZIKV production,respecitvely.Results tRSA RNA pull-down assay,LC-MS/MS,and Western blot analysis showed that polypyrimidine tractbinding protein(PTB)bound to the ZIKV 5'UTR.Furthermore,dual luciferase reporter assay revealed that overexpression of PTB significantly enhanced the IRES activity of ZIKV(t=10.220,P<0.001),while PTB knockdown had the opposite effect(t=4.897,P<0.01).Additionally,virus plaque forming assay demonstrated that up-regulation of PTB expression significantly enhanced viral titer(t=6.400,P<0.01),whereas reducing PTB expression level weakened virus infectivity(t=5.055,P<0.01).Conclusion PTB positively interacts with the ZIKV 5'UTR and enhances IRES activity and virus production. 展开更多
关键词 internal ribosomal entry site polypyrimidine tract-binding protein Zika virus tRSA RNA pull-down dual-luciferase reporter assay
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人膜补体调节蛋白MCP、CD59在稳定转染的细胞中的共表达及功能研究
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作者 刘辉 徐莉 李文鑫 《高技术通讯》 CAS CSCD 北大核心 2006年第11期1159-1164,共6页
采取内核糖体进入位点(IRES)策略构建含人的膜补体调节蛋白基因MCP和CD59的cDNA的双顺反子真核表达载体pcDNA3-MCPIRESCD59,以磷酸钙沉淀法转染NIH3T3细胞,用G418筛选阳性克隆,并研究MCP和CD59双基因在稳定细胞系中的共表达及保护... 采取内核糖体进入位点(IRES)策略构建含人的膜补体调节蛋白基因MCP和CD59的cDNA的双顺反子真核表达载体pcDNA3-MCPIRESCD59,以磷酸钙沉淀法转染NIH3T3细胞,用G418筛选阳性克隆,并研究MCP和CD59双基因在稳定细胞系中的共表达及保护功能。PCR实验结果显示双基因稳定整合在异源细胞NIH3T3的染色体上,RT-PER及Western印迹实验分别从RNA水平和蛋白质水平证实了人补体调节蛋白分子MCP和CD59在细胞系中皆获得同步表达。检测连续传代30次的NIH3T3 pcDNA3-MCPIRESCD59,结果表明人MCP和CD59基因仍稳定整合在细胞基因组中,并未随着传代而丢失,为稳定的转双基因细胞系。补体依赖的细胞毒反应表明,peDNA3-MCPIRESCD59转染细胞由于MCP和CD59的共表达获得了高于MCP或CD59单一表达时所提供的保护功效,能更好地抑制人补体依赖的细胞毒作用的发生,保护宿主细胞免受人补体的攻击。以上结果表明,所构建的双基因重组表达载体实现了不同人补体调节蛋白基因高效转移和高水平共表达,在克服超急性排斥反应的基因治疗中有潜在的应用价值。 展开更多
关键词 补体调节蛋白 内核糖体进入位点 共表达 超急性排斥反应
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