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1.
目的:应用重组杆状病毒表达系统制备由HA、NA、M1和M2蛋白组成的H5N1高致病性禽流感病毒样颗粒,为研究H5N1高致病性禽流感疫苗奠定基础。方法:构建能共表达A/chicken/Jilin/2003(H5N1)禽流感病毒血凝素(HA)和神经氨酸酶(NA)、A/PR/8/34(H1N1)流感病毒基质蛋白(M1)和离子通道蛋白(M2)的2个二元重组杆状病毒,共同感染HighFive细胞,同时表达HA、NA、M1和M2蛋白,使这4种蛋白在感染的细胞内自主组装成病毒样颗粒。经差速离心和蔗糖密度梯度超速离心收获病毒样颗粒,通过Western印迹鉴定病毒样颗粒的组成,透射电镜观察病毒样颗粒形态,血凝试验测定病毒样颗粒的活性。结果:HA、NA、M1、M2蛋白在昆虫细胞中共表达,并组装成病毒样颗粒;电镜观察到病毒样颗粒的形态与流感病毒一致,直径约80 nm;血凝试验显示该病毒样颗粒具有凝集鸡红细胞的活性。结论:应用该方法可以制备流感病毒样颗粒,为H5N1流感疫苗研究提供了可行方案。  相似文献   

2.
为研制广谱性禽流感口服疫苗,将4种禽流感病毒特异的基质蛋白2胞外区(matrix protein 2 ectodomain,M2e)多肽与黏膜免疫佐剂CTA1-DD串联,原核表达并纯化CTA1DD-AVI4M2e融合蛋白。以200 μg融合蛋白CTA1DD-AVI4M2e口服免疫BALB/c小鼠,结果显示实验组肠液IgA抗体效价和血清IgG抗体效价比对照组显著升高,血清中特异性IgG抗体效价达约360倍。分割的3段肠样中:第1段浸出液IgA抗体效价约为360倍,第2段约为120倍,第3段约为 9 720 倍。结果表明,本研究制备的CTA1DD-AVI4M2e具有显著口服免疫效果,为后续研究提供了基础。  相似文献   

3.
近年来研究发现,副黏病毒基质蛋白(Matrix protein,M)是一种多功能病毒蛋白,在细胞内不仅能抑制宿主细胞基因的转录和翻译、调节病毒基因组的复制和转录以及招募细胞蛋白协助病毒粒子组装和出芽,还可以通过自身的泛素化和磷酸化修饰促进病毒的复制。然而,作为副黏病毒成员之一的新城疫病毒(Newcastle disease virus,NDV),其M蛋白目前仅证实参与了NDV的组装和出芽释放过程,其它副黏病毒M蛋白的功能在NDV中尚不清楚。本文结合近年来国内外副黏病毒M蛋白功能的相关研究进展,将NDV与其它副黏病毒M蛋白功能进行比较,着重阐述了M蛋白在NDV毒力、复制和致病性等方面的功能和作用机制,并对NDV M蛋白功能研究中存在的问题和今后的研究方向进行了展望。  相似文献   

4.
以禽流感病毒保守的基质蛋白2胞外区(M2e) 基因与核蛋白的两个T细胞表位(NP1、NP2)基因为基础构建原核表达载pET-3M2e-NP1-NP2。利用IPTG诱导,目的蛋白以可溶性形式获得高效表达,Western-Blot分析表明重组蛋白能够与抗AIV M2e蛋白的抗体发生反应。将纯化的融合蛋白分别与弗氏佐剂、白油、壳聚糖三种佐剂进行混合以及适量诱导后的菌体与白油混合制成疫苗,肌肉注射免疫20日龄非免鸡,首免3周后加强免疫一次。免疫后每周定期采血, 用ELISA方法检测抗M2e抗体水平;并在MDCK细胞上检测血清与病毒的结合能力;在鸡胚上检测血清的中和能力;利用流式细胞计数技术测定CD4+、CD8+T淋巴细胞数量的变化。结果表明,原核表达的融合蛋白能够刺激机体产生免疫反应,抗血清能够跟H9N2亚型禽流感病毒特异性结合,血清不能中和病毒但在低病毒含量感染时候抑制病毒的复制。流式细胞仪检测显示外周血CD4+、CD8+T淋巴细胞数量在免疫后明显升高(P<0.05),具有细胞免疫的特征。佐剂对于免疫反应影响明显,其中弗氏佐剂组产生抗体最高,白油佐剂组次之,壳聚糖组抗体水平最低,菌体白油组产生抗体水平与白油佐剂组相当但维持时间较长。构建的融合蛋白可用于禽流感的预防,而选择高效的佐剂增强亚单位苗的免疫效果也是目前急需解决的问题。  相似文献   

5.
构建并表达H5N1亚型禽流感病毒血凝素蛋白单链抗体,为禽流感靶向治疗药物的研制制备靶向载体。从分泌血凝素单克隆抗体的杂交瘤细胞株中提取mRNA,采用RT-PCR法扩增出重链和轻链可变区基因,通过SOE-PCR法将重链和轻链通过Linker连接起来构建单链抗体基因,将获得的单链抗体基因装入原核表达载体pET28a(+)中,构建重组质粒并表达,以Western blot鉴定单链抗体的特异性。结果成功构建了单链抗体基因,全长714bp,经原核表达,所构建的单链抗体可与H5亚型禽流感病毒HA蛋白特异结合,为禽流感的靶向治疗奠定了基础。  相似文献   

6.
将禽流感病毒M2基因克隆于真核表达质粒pIRES-EGFP中,使其位于pCMV启动子的调控下,并与绿色荧光蛋白基因(EGFP)串联后,将上述串联基因插入到含MDV CVI988的非必需区US基因的重组质粒pUS2中,构建带标记的重组质粒,然后将此重组质粒转染感染了MDV CVI988的鸡胚成纤维细胞,利用同源重组的方法,筛选了表达禽流感病毒M2基因的重组病毒MDV1。经PCR、Dot-blotting,Western-blotting等实验的结果表明,禽流感病毒M2基因的确插入到MDV1(CVI988)基因组中并获得表达。重组MDV1免疫1日龄SPF鸡21天后,用ELISA可检测到M2蛋白的特异性抗体。接种了重组病毒rMDV的鸡体内针对H9N2疫苗血凝素的抗体滴度(p<0.05)明显提高,以禽流感病毒AIV A/Chicken/Guangdong/00(H9N2)攻毒后进行病毒重分离试验的结果发现,重组病毒能有效地降低病毒的排出量(p<0.01),说明该重组病毒可以用于防制禽流感的免疫。  相似文献   

7.
禽流感病毒最新研究进展   总被引:7,自引:0,他引:7  
王乐  郭蓓 《生命科学》2006,18(1):35-40
本文针对2004年爆发的禽流感疫病,回顾了2004年至2005年期间禽流感病毒的研究进展。逆转录聚合酶链式反应技术为禽流感病毒的分型提供了一种快速、可靠、准确的方法。对H5N1禽流感病毒致病机制的研究发现,其强致病性在于它可以躲避人类抗病毒细胞因子的作用,NS1基因编码蛋白的92位谷氨酸在其中发挥了关键作用。由于禽流感疾病多引起结膜炎,并与病毒细胞受体的研究结果相结合,有科学家认为眼部特异性是禽流感病毒的一个总体特征。社会普遍关注禽流感疫苗的研制,人类和禽类流感A型病毒M2蛋白胞外区域的序列比对工作为疫苗研制提供了一条新的思路,依据神经氨酸酶抑制剂抑制病毒的出芽繁殖原理的疫苗正在研制过程中,而利用siRNA预防和治疗禽流感也是很有潜力的一种方法。禽流感病毒研究的另一个热点是病毒基因节段的重配问题。  相似文献   

8.
当前靶向表面蛋白的疫苗可驱使抗原变异,其结果或是导致更高致病性病毒的出现,或是产生抗原上不同的病毒能逃逸疫苗接种下的控制从而在宿主人群中生存下来。通常的流感疫苗是靶向高度易变的表面蛋白且不能抗异源病毒的攻击。诱导抗流感保守表位的免疫应答的疫苗可提供抗异源病毒攻击的保护作用。作者在此文中报道了用经修饰的痘病毒Ankara(MVA)与腺病毒(Ad)表达核蛋白和基质蛋白(NP+M1)的融合体形成重组体用其接种的后果,以序贯的疫苗接种方式在不同年龄的鸡中进行试验,发现是安全和具免疫原性的。用干扰素-y(IFN-y)斑点试验法评估第二针接种后的细胞免疫应答。卵内Ad初免孵化后4周用MVA加强免疫对近交系和远交系小鸡都是最具免疫原性的方式。近交系鸡(C151)用致病性的禽流感病毒(LPAI)H7N7攻击。用Ad-NP+M1初免、MVA-NP+M1加强的小鸡在感染后的第17天,根据空斑试验测定雕泄殖腔病毒排量比用含非相关抗原的重组病毒的免疫者减少了。这种初步的效力可证明鸟中的概念骀证:含流感病毒内部抗原的病毒载体诱导鸡的T细胞应答可能是研制流感疫苗有效的策略,这种疫荏可诱导抗禽流感的异源保护作用。  相似文献   

9.
KPNB1和Ran蛋白共同介导新城疫病毒基质蛋白的入核转运   总被引:2,自引:1,他引:1  
【目的】鉴定与新城疫病毒(Newcastle disease virus,NDV)基质蛋白(matrix protein,M)入核相关的细胞蛋白,以阐明NDV M蛋白细胞核定位的分子机制。【方法】从鸡胚成纤维细胞中分别克隆核转运受体蛋白KPNA1–KPNA6和KPNB1基因,将其构建到真核表达载体,并与表达NDV M蛋白的重组真核表达载体分别共转染HEK-293T细胞,通过免疫共沉淀方法鉴定与NDV M蛋白相互作用的核转运受体蛋白。另外,将M蛋白与Ran蛋白突变体或与M蛋白互作的核转运受体蛋白缺失体分别共表达,通过荧光共定位确定M蛋白入核转运相关的细胞蛋白。【结果】构建的重组真核表达载体在HEK-293T细胞中能够正确表达;通过间接免疫荧光观察发现,重组蛋白中除Myc-KPNA2蛋白定位在细胞质外,其它核转运受体蛋白均与M蛋白表现出相同的细胞核定位。免疫共沉淀试验结果表明,M蛋白与KPNA1蛋白和KPNB1蛋白均存在相互作用。进一步通过荧光共定位观察发现,M蛋白与KPNA1蛋白缺失体(DN-KPNA1)共表达不改变M蛋白的细胞核定位,而与KPNB1蛋白缺失体(DN-KPNB1)共表达后导致M蛋白变为细胞质定位,说明M蛋白入核转运需要KPNB1蛋白的参与。另外,将M蛋白与Ran蛋白突变体Ran-Q69L共表达,荧光观察发现M蛋白同样由细胞核定位变为细胞质定位,说明M蛋白入核转运还需要Ran蛋白的辅助。【结论】KPNB1和Ran蛋白共同介导NDV M蛋白的入核转运,其过程是KPNB1蛋白首先和M蛋白发生相互作用并形成复合物,然后通过Ran蛋白的辅助作用完成入核转运。  相似文献   

10.
目的:鉴定高致病性H5N1禽流感病毒感染A549肺癌细胞后,细胞蛋白质组的表达变化,并鉴定特异分子通路的改变及其涉及的关键蛋白质分子。方法:利用稳定同位素标记氨基酸技术(SILAC)标记A549细胞,得到“重标”或“轻标”的A549细胞;“重标”细胞感染高致病性F15N1禽流感病毒24h后提取细胞总蛋白,与从未感染病毒的“轻标”细胞中提取的总蛋白等量混合,酶解肽段,经正交反相色谱分离后用质谱鉴定,对数据进行定性和定量分析。结果:共鉴定到3504个蛋白质,有定量信息的蛋白质为2469个,病毒感染后表达量升高的蛋白质为72个,表达量降低的蛋白质为66个,其中包括参与多个分子调控途径如RNA剪接体、干扰素诱导通路、泛素化通路、胰岛素通路等的蛋白质。结论:建立了利用SILAC技术研究宿主细胞一病毒相互作用的方法,发现了高致病性H5N1禽流感病毒感染宿主细胞相关的关键蛋白质,为探索H5N1病毒致病的分子机理提供了理论基础。  相似文献   

11.
To prevent the human and economic losses caused by human and avian influenza viruses, it is necessary to prepare safe bivalent influenza vaccines. Recent studies found that human influenza vaccines based on the extracellular domain of influenza M2 protein (M2e) induced broad-spectrum protective immunity in various antigen constructs. A prerequisite for using the M2e protein as a bivalent influenza vaccine component was to find out the sequence differences between human and non-human (avian or swine) influenza M2e proteins. Here, we completed such a comparison using 716 influenza M2e sequences available in Genbank. The results found one region on M2e protein consistent with host restriction specificities: PIRNEWGCRCN, PTRNGWECKCS and PIRNGWECRCN (aa10-20; the human, avian and swine specific M2e sequence, respectively). Interestingly, the comparison result was then validated by immunoblotting and enzyme-linked immunosorbent assay. The monoclonal antibody against the EVETPIRN sequence (aa6-13) of human M2e protein could weakly recognize avian M2e proteins bearing the EVETPTRN sequence (aa6-13) but failed to recognize avian M2e proteins bearing the EVETLTRN sequence (aa6-13). The data in this study provided useful information in the race to develop bivalent influenza vaccines against avian and human influenza A virus infection in human beings.  相似文献   

12.
【背景】猪流行性腹泻病毒(Porcine epidemic diarrhea virus,PEDV)膜蛋白(M)在病毒粒子的组装、膜融合和病毒复制等方面具有重要的作用,但M蛋白与宿主细胞的互作机制尚不清楚。【目的】利用免疫沉淀技术和液质联用技术筛选细胞内与PEDVM蛋白相互作用的蛋白,为揭示M蛋白在病毒增殖过程中发挥的功能提供研究基础。【方法】将MOI=0.1的PEDV DR13疫苗株接种于长成单层的Vero细胞,感染36 h后,收集细胞并进行裂解。利用抗M的单克隆抗体沉淀与M相互作用蛋白复合物,通过液相色谱串联质谱(LC-MS/MS)进行鉴定并利用细胞功能富集分析(Gene ontology,GO)对感染组鉴定到的细胞蛋白进行分析,确定两个细胞内源性蛋白为候选蛋白,进行免疫共沉淀(Co-IP)验证和共定位分析。【结果】基于鉴定蛋白的肽段数的方法分析显示,感染组与对照组相比,鉴定了218个与M蛋白相互作用的细胞内源性蛋白,分别与蛋白质合成、代谢、细胞信号通路转导等密切相关,选择细胞分裂周期蛋白42 (Cell division cycle 42,CDC42)、真核翻译起始因子3亚基L蛋白(eIF3L)为候选蛋白进行Co-IP(Co-immunoprecipitation)验证和共定位分析,结果证实CDC42、eIF3L蛋白分别与M蛋白在细胞内存在相互作用。【结论】鉴定出PEDV M蛋白能够与宿主细胞CDC42和eIF3L蛋白相互作用,并鉴定出其他可能与M蛋白发生相互作用的宿主蛋白60个,为开展PEDV与宿主细胞蛋白相互作用研究提供了重要理论依据。  相似文献   

13.
Strong determinants of the host range of influenza A viruses have been identified on the polymerase complex formed by the PB1, PB2, and PA subunits and on the nucleoprotein (NP). In the present study, molecular mechanisms that may involve these four core proteins and contribute to the restriction of avian influenza virus multiplication in human cells have been investigated. The efficiencies with which the polymerase complexes of a human and an avian influenza virus isolate assemble and interact with the viral NP and cellular RNA polymerase II proteins were compared in mammalian and in avian infected cells. To this end, recombinant influenza viruses expressing either human or avian-derived core proteins with a PB2 protein fused to the One-Strep purification tag at the N or C terminus were generated. Copurification experiments performed on infected cell extracts indicate that the avian-derived polymerase is assembled and interacts physically with the cellular RNA polymerase II at least as efficiently as does the human-derived polymerase in human as well as in avian cells. Restricted growth of the avian isolate in human cells correlates with low levels of the core proteins in infected cell extracts and with poor association of the NP with the polymerase compared to what is observed for the human isolate. The NP-polymerase association is restored by a Glu-to-Lys substitution at residue 627 of PB2. Overall, our data point to viral and cellular factors regulating the NP-polymerase interaction as key determinants of influenza A virus host range. Recombinant viruses expressing a tagged polymerase should prove useful for further studies of the molecular interactions between viral polymerase and host factors during the infection cycle.  相似文献   

14.
Influenza virus matrix 1 protein (M1) is highly conserved and plays essential roles at many stages of virus life cycle. Here, we used a yeast two‐hybrid system to identify the host protein SLD5, a component of the GINS complex, which is essential for the initiation of DNA replication in eukaryotic cells, as a new M1 interacting protein. M1 from several different influenza virus strains all interacted with SLD5. Overexpression of SLD5 suppressed influenza virus replication. Transient, stable, or inducible expression of M1 induced host cell cycle blockade at G0/G1 phase. Moreover, SLD5 partially rescued M1 expression‐ or influenza virus infection‐induced G0/G1 phase accumulation in cell lines and primary mouse embryonic fibroblasts. Importantly, SLD5 transgenic mice exhibited higher resistance and improved lung epithelial regeneration after virus infection compared with wild‐type mice. Therefore, influenza virus M1 blocks host cell cycle process by interacting with SLD5. Our finding reveals the multifunctional nature of M1 and provides new insight for understanding influenza virus–host interaction.  相似文献   

15.
Influenza A virus matrix protein (M1) is the most abundant conservative protein that regulates the replication, assembly and budding of the viral particles upon infection. Several host cell factors have been determined to interact with M1 possibly in regulating influenza virus replication. By yeast two-hybrid screening, the isomerase cyclophilin A (CypA) was identified to interact with the M1 protein. CypA specifically interacted with M1 both in vitro and in vivo . The mutagenesis results showed CypA bound to the functional middle (M) domain of M1. The depletion of endogenous CypA by RNA interference resulted in the increase of influenza virus infectivity while overexpression of CypA caused decreasing the infectivity in affected cells. The immunofluorescence assays indicated that overexpressed CypA deduced the infectivity and inhibited the translocation of M1 protein into the nucleus while did not affect nucleoprotein entering the nucleus. Further studies indicated that overexpression of CypA significantly increased M1 self-association. Western blot with purified virions confirmed that CypA was encapsidated within the virus particle. These results together indicated that CypA interacted with the M1 protein and affected the early stage of the viral replication.  相似文献   

16.
H5N6 highly pathogenic avian influenza virus (HPAIV) clade 2.3.4.4 not only exhibits unprecedented intercontinental spread in poultry, but can also cause serious infection in humans, posing a public health threat. Phylogenetic analyses show that 40% (8/20) of H5N6 viruses that infected humans carried H9N2 virus-derived internal genes. However, the precise contribution of H9N2 virus-derived internal genes to H5N6 virus infection in humans is unclear. Here, we report on the functional contribution of the H9N2 virus-derived matrix protein 1 (M1) to enhanced H5N6 virus replication capacity in mammalian cells. Unlike H5N1 virus-derived M1 protein, H9N2 virus-derived M1 protein showed high binding affinity for H5N6 hemagglutinin (HA) protein and increased viral progeny particle release in different mammalian cell lines. Human host factor, G protein subunit beta 1 (GNB1), exhibited strong binding to H9N2 virus-derived M1 protein to facilitate M1 transport to budding sites at the cell membrane. GNB1 knockdown inhibited the interaction between H9N2 virus-derived M1 and HA protein, and reduced influenza virus-like particles (VLPs) release. Our findings indicate that H9N2 virus-derived M1 protein promotes avian H5N6 influenza virus release from mammalian, in particular human cells, which could be a major viral factor for H5N6 virus cross-species infection.  相似文献   

17.
寻找与SARS-CoV核蛋白相互作用的宿主细胞蛋白,从而探索SARS-CoV的致病机理。可溶性表达SARS-CoV核蛋白,利用His标签和离子交换层析对表达的蛋白进行了纯化,获得较纯的可溶性核蛋白。再将SPR/BIA技术与MALDI-TOF MS技术结合起来,使用SPR生物传感芯片作为亲和吸附的表面,分别捕获2BS细胞和A549细胞裂解液中与SARS-CoV核蛋白相互作用的细胞蛋白,收集足够量的相互作用蛋白,再利用MALDI-TOF-MS分析获得蛋白的性质。结果鉴定出与SARS-CoV核蛋白相互作用的蛋白:26S蛋白酶调节亚单位S10B(蛋白酶体亚单位p42)(蛋白酶体26S亚单位ATPase 6)(P62333),属于泛素/蛋白酶体系统;目前国内外尚未见类似报道。此研究初步发现了一种与SARS-CoV核蛋白在细胞外相互作用的蛋白,但这种相互作用在SARS-CoV感染及SARS的发生发展中发挥的作用还有待于深入研究和探索。  相似文献   

18.
Analysis of the NS and M genes of the archetype H6N5 influenza virus strain A/shearwater/Australia/1/72 shows it to be a typical example of the avian host reservoir, containing Old World/Eurasian internal proteins with divergent surface proteins, which is a potential source of new pandemic strains.  相似文献   

19.
Influenza A viruses can adapt to new host species, leading to the emergence of novel pathogenic strains. There is evidence that highly pathogenic viruses encode for non-structural 1 (NS1) proteins that are more efficient in suppressing the host immune response. The NS1 protein inhibits type-I interferon (IFN) production partly by blocking the TRIM25 ubiquitin E3 ligase-mediated Lys63-linked ubiquitination of the viral RNA sensor RIG-I, required for its optimal downstream signaling. In order to understand possible mechanisms of viral adaptation and host tropism, we examined the ability of NS1 encoded by human (Cal04), avian (HK156), swine (SwTx98) and mouse-adapted (PR8) influenza viruses to interact with TRIM25 orthologues from mammalian and avian species. Using co-immunoprecipitation assays we show that human TRIM25 binds to all tested NS1 proteins, whereas the chicken TRIM25 ortholog binds preferentially to the NS1 from the avian virus. Strikingly, none of the NS1 proteins were able to bind mouse TRIM25. Since NS1 can inhibit IFN production in mouse, we tested the impact of TRIM25 and NS1 on RIG-I ubiquitination in mouse cells. While NS1 efficiently suppressed human TRIM25-dependent ubiquitination of RIG-I 2CARD, NS1 inhibited the ubiquitination of full-length mouse RIG-I in a mouse TRIM25-independent manner. Therefore, we tested if the ubiquitin E3 ligase Riplet, which has also been shown to ubiquitinate RIG-I, interacts with NS1. We found that NS1 binds mouse Riplet and inhibits its activity to induce IFN-β in murine cells. Furthermore, NS1 proteins of human but not swine or avian viruses were able to interact with human Riplet, thereby suppressing RIG-I ubiquitination. In conclusion, our results indicate that influenza NS1 protein targets TRIM25 and Riplet ubiquitin E3 ligases in a species-specific manner for the inhibition of RIG-I ubiquitination and antiviral IFN production.  相似文献   

20.
The nucleotide sequence of the region of RNA segment 7 coding for the M1 and M2 proteins of avian influenza A/Mallard/New York/6750/78 was determined, and the deduced amino acid sequences were compared to other avian and human M protein sequences. The M2 proteins of the avian and human viruses have diverged much more than the M1 proteins, although amino acids specific for avian and human viruses were found in both M1 and M2 proteins.  相似文献   

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