Ebola virus(EBOV)is an enveloped negative-sense RNA virus and a member of the filovirus family.Nucleoprotein(NP)expression alone leads to the formation of inclusion bodies(IBs),which are critical for viral RNA synthes...Ebola virus(EBOV)is an enveloped negative-sense RNA virus and a member of the filovirus family.Nucleoprotein(NP)expression alone leads to the formation of inclusion bodies(IBs),which are critical for viral RNA synthesis.The matrix protein,VP40,not only plays a critical role in virus assembly/budding,but also can regulate transcription and replication of the viral genome.However,the molecular mechanism by which VP40 regulates viral RNA synthesis and virion assembly/budding is unknown.Here,we show that within IBs the N-terminus of NP recruits VP40 and is required for VLP-containing NP release.Furthermore,we find four point mutations(L692A,P697A,P698A and W699A)within the C-terminal hydrophobic core of NP result in a stronger VP40–NP interaction within IBs,sequestering VP40 within IBs,reducing VP40–VLP egress,abolishing the incorporation of NC-like structures into VP40–VLP,and inhibiting viral RNA synthesis,suggesting that the interaction of N-terminus of NP with VP40 induces a conformational change in the C-terminus of NP.Consequently,the C-terminal hydrophobic core of NP is exposed and binds VP40,thereby inhibiting RNA synthesis and initiating virion assembly/budding.展开更多
Protein-DNA binding assays have been used in a va-riety of applications from fundamental studies re-garding the binding process itself to serve as probes for the detection, quantification and separation of target anal...Protein-DNA binding assays have been used in a va-riety of applications from fundamental studies re-garding the binding process itself to serve as probes for the detection, quantification and separation of target analytes. Here we describe a novel method of analyzing and identifying intermolecular DNA interactions that allows for the simple separation of interacting nucleoprotein complex components (SSINCC), focusing specifically on DNA-DNA interactions using P1 plasmid active partition system nucleoprotein complexes as a model to demonstrate DNA sequence specificity and tolerance of composite factor complexity. Traditional and recent assays of protein-DNA interaction are summarized and compared with SSINC. Although SSINC is examined here employing P1 partition nucleoprotein complex as an example of DNA-DNA intermolecular association, universal applications of this methodology to nucleo-protein complex studies can be envisioned.展开更多
目的构建通用流感mRNA疫苗并全面评价其免疫保护效果。方法优化流感病毒株A/California/04/2009的血凝素(hemagglutinin,HA)、核蛋白(nucleoprotein,NP)和基质蛋白2胞外区(matrix protein 2 ectodomain,M2e)抗原序列,并将HA、NP和3个串...目的构建通用流感mRNA疫苗并全面评价其免疫保护效果。方法优化流感病毒株A/California/04/2009的血凝素(hemagglutinin,HA)、核蛋白(nucleoprotein,NP)和基质蛋白2胞外区(matrix protein 2 ectodomain,M2e)抗原序列,并将HA、NP和3个串联的M2e(3M2e)分别克隆至pcDNA3.1载体,通过线性化、体外转录、酶学法加帽、酶促加尾合成mRNA,命名为mRNA-HA、mRNA-NP和mRNA-3M2e。3种mRNA分别转染293T细胞后,通过免疫荧光实验鉴定蛋白的表达。利用脂质纳米颗粒分别包裹mRNA-HA、mRNA-NP和mRNA-3M2e并测量其粒径和电位。再将3种mRNA等体积混合制备成Comb-mRNA疫苗。将28只6周雌性Balb/c小鼠(体质量为18~22 g)按简单随机分组法分为2组:LNP组(n=14)和Comb-mRNA组(n=14)。通过血凝抑制(hemagglutination inhibition,HI)、微量中和(microneutralization,MN)实验评价流感mRNA疫苗诱导小鼠产生的血清抗体滴度;通过流式细胞术评价Comb-mRNA疫苗诱导的细胞免疫反应。采用5LD_(50)野生型H1N1流感病毒株感染小鼠评价Comb-mRNA疫苗的免疫保护效果。结果成功构建mRNA-HA、mRNA-NP和mRNA-3M2e,且3种mRNA均能在293T细胞表达。脂质纳米颗粒包裹mRNA平均粒径为(119.53±6.5)nm,平均电位为(-8.23±1.3)mV。与LNP组比较,Comb-mRNA组疫苗的HI几何平均滴度(geometric mean titer,GMT)达179.6,MN的GMT达201.6,同时诱导IFNγ+CD4+/CD8+T细胞比例升高。Comb-mRNA组在加强免疫后2周能够提供对5LD_(50)野生流感H1N1亚型病毒的保护。结论通用流感疫苗候选疫苗Comb-mRNA能够诱导小鼠免疫反应并保护小鼠免受病毒感染。展开更多
基金We acknowledge Dr.Bo Zhang(Wuhan Institute of Virology)and Dr.Heinz Feldmann(National Institutes of Health,Hamilton,Montana,USA)for providing the Ebola cDNA and minigenome assay system,respectivelyThis research is supported by grants from the National Natural Science Foundation of China(81825015)+4 种基金National Key R&D Program of China(2017YFA0505801)National Science and Technology Major Project(2018ZX10101004)National Natural Science Foundation of China(81871650 and 31630086)The Natural Science Foundation of Hubei Province Innovation Group(2017CFA022)Advanced Customer Cultivation Project of Wuhan National Biosafety Laboratory(2019ACCP-MS06).
文摘Ebola virus(EBOV)is an enveloped negative-sense RNA virus and a member of the filovirus family.Nucleoprotein(NP)expression alone leads to the formation of inclusion bodies(IBs),which are critical for viral RNA synthesis.The matrix protein,VP40,not only plays a critical role in virus assembly/budding,but also can regulate transcription and replication of the viral genome.However,the molecular mechanism by which VP40 regulates viral RNA synthesis and virion assembly/budding is unknown.Here,we show that within IBs the N-terminus of NP recruits VP40 and is required for VLP-containing NP release.Furthermore,we find four point mutations(L692A,P697A,P698A and W699A)within the C-terminal hydrophobic core of NP result in a stronger VP40–NP interaction within IBs,sequestering VP40 within IBs,reducing VP40–VLP egress,abolishing the incorporation of NC-like structures into VP40–VLP,and inhibiting viral RNA synthesis,suggesting that the interaction of N-terminus of NP with VP40 induces a conformational change in the C-terminus of NP.Consequently,the C-terminal hydrophobic core of NP is exposed and binds VP40,thereby inhibiting RNA synthesis and initiating virion assembly/budding.
文摘Protein-DNA binding assays have been used in a va-riety of applications from fundamental studies re-garding the binding process itself to serve as probes for the detection, quantification and separation of target analytes. Here we describe a novel method of analyzing and identifying intermolecular DNA interactions that allows for the simple separation of interacting nucleoprotein complex components (SSINCC), focusing specifically on DNA-DNA interactions using P1 plasmid active partition system nucleoprotein complexes as a model to demonstrate DNA sequence specificity and tolerance of composite factor complexity. Traditional and recent assays of protein-DNA interaction are summarized and compared with SSINC. Although SSINC is examined here employing P1 partition nucleoprotein complex as an example of DNA-DNA intermolecular association, universal applications of this methodology to nucleo-protein complex studies can be envisioned.
文摘目的构建通用流感mRNA疫苗并全面评价其免疫保护效果。方法优化流感病毒株A/California/04/2009的血凝素(hemagglutinin,HA)、核蛋白(nucleoprotein,NP)和基质蛋白2胞外区(matrix protein 2 ectodomain,M2e)抗原序列,并将HA、NP和3个串联的M2e(3M2e)分别克隆至pcDNA3.1载体,通过线性化、体外转录、酶学法加帽、酶促加尾合成mRNA,命名为mRNA-HA、mRNA-NP和mRNA-3M2e。3种mRNA分别转染293T细胞后,通过免疫荧光实验鉴定蛋白的表达。利用脂质纳米颗粒分别包裹mRNA-HA、mRNA-NP和mRNA-3M2e并测量其粒径和电位。再将3种mRNA等体积混合制备成Comb-mRNA疫苗。将28只6周雌性Balb/c小鼠(体质量为18~22 g)按简单随机分组法分为2组:LNP组(n=14)和Comb-mRNA组(n=14)。通过血凝抑制(hemagglutination inhibition,HI)、微量中和(microneutralization,MN)实验评价流感mRNA疫苗诱导小鼠产生的血清抗体滴度;通过流式细胞术评价Comb-mRNA疫苗诱导的细胞免疫反应。采用5LD_(50)野生型H1N1流感病毒株感染小鼠评价Comb-mRNA疫苗的免疫保护效果。结果成功构建mRNA-HA、mRNA-NP和mRNA-3M2e,且3种mRNA均能在293T细胞表达。脂质纳米颗粒包裹mRNA平均粒径为(119.53±6.5)nm,平均电位为(-8.23±1.3)mV。与LNP组比较,Comb-mRNA组疫苗的HI几何平均滴度(geometric mean titer,GMT)达179.6,MN的GMT达201.6,同时诱导IFNγ+CD4+/CD8+T细胞比例升高。Comb-mRNA组在加强免疫后2周能够提供对5LD_(50)野生流感H1N1亚型病毒的保护。结论通用流感疫苗候选疫苗Comb-mRNA能够诱导小鼠免疫反应并保护小鼠免受病毒感染。