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1.
为了比较不同启动子在杆状病毒/昆虫细胞中的活性, 利用对虾白斑综合症病毒(White spot syndrome virus, WSSV)的ie1启动子及其截短的mie1启动子、杆状病毒ETL启动子及其加长的mETL启动子以及杆状病毒多角体启动子PPH, 构建了含有不同启动子控制下的EGFP报告基因的重组杆状病毒, 分别感染Sf9昆虫细胞, 利用流式细胞术检测报告基因的表达水平。结果表明, WSSV的ie1启动子和杆状病毒的mETL启动子在昆虫细胞Sf9细胞中都具有较强而早的启动子活性, 能够控制报告基因早期高效表达, 而PPH在感染后期才表现较强活性。并且研究中发现, 杆状病毒同源重复区(hr1)可以增强ETL启动子的活性。  相似文献   

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为了比较不同启动子在杆状病毒/昆虫细胞中的活性, 利用对虾白斑综合症病毒(White spot syndrome virus, WSSV)的ie1启动子及其截短的mie1启动子、杆状病毒ETL启动子及其加长的mETL启动子以及杆状病毒多角体启动子PPH, 构建了含有不同启动子控制下的EGFP报告基因的重组杆状病毒, 分别感染Sf9昆虫细胞, 利用流式细胞术检测报告基因的表达水平。结果表明, WSSV的ie1启动子和杆状病毒的mETL启动子在昆虫细胞Sf9细胞中都具有较强而早的启动子活性, 能够控制报告基因早期高效表达, 而PPH在感染后期才表现较强活性。并且研究中发现, 杆状病毒同源重复区(hr1)可以增强ETL启动子的活性。  相似文献   

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含具有哺乳动物细胞活性的启动子的重组杆状病毒(BacMam病毒)可有效转导多种哺乳动物细胞,并被广泛用于开发新型非复制型载体疫苗.将水泡性口炎病毒G蛋白(VSV-G)基因插入多角体启动子下游,得到经修饰的杆状病毒转移载体,将对虾白斑综合症病毒(WSSV)ie1启动子控制下的猪瘟病毒E2基因表达盒插入此载体中,构建了BacMam病毒BacMam/G-ie1-E2,以其感染Sf9细胞和转导HeLa细胞,通过间接免疫荧光试验和Western blot分析检测E蛋白的表达,同时用BacMam病毒直接免疫小鼠,用检测猪瘟病毒抗体的间接ELISA方法检测免疫小鼠血清抗体,用基于CFSE和WST-8的淋巴细胞增殖试验评价其细胞免疫应答.结果显示,BacMam/G-ie1-E2能同时在昆虫细胞和哺乳动物细胞中高效表达E2蛋白,免疫小鼠能诱导产生针对猪瘟病毒的特异性抗体,免疫小鼠脾细胞经猪瘟病毒刺激后能诱导特异性的淋巴细胞增殖.这表明,由BacMam病毒介导的基因转移有望用于开发针对猪瘟病毒的非复制型载体疫苗.  相似文献   

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【目的】同安钮夜蛾Ophiusa disjungens(鳞翅目, 夜蛾科)是危害桉树的主要害虫之一。同安钮夜蛾核型多角体病毒(OpdiNPV)是从O. disjungens中分离到的新病毒。本研究主要目的是从分子水平上了解该病毒。【方法】对一条PstⅠ的酶切片段进行了克隆、 测序和分析。【结果】在基因数据库中通过对碱基序列的比对, 发现了一个Ac108的同源基因, 命名为Opdi108 (GenBank登录号为EU 732666)。该基因的开放阅读框含有225对碱基, 其编码蛋白与其他已知杆状病毒同源物有16%~37%的氨基酸序列一致性。在起始密码子ATG上游有一个晚期启动子TAAG。C末端含有His-tag的Opdi108基因在大肠杆菌中Escherichia coli进行了表达, 融合蛋白的分子量为28.7 kDa。以荧光蛋白EGFP为标记物, 构建了Opdi108与EGFP的重组体, 利用Bac-to-Bac表达系统实现了与AcMNPV的重组, 用该重组病毒vEGFP-Opdi108感染斜纹夜蛾Trichoplusia ni 细胞。感染24和72 h后分别用共聚荧光显微镜观察, 发现Opdi108定位在细胞质内。【结论】本研究从分子生物学角度研-OpdiNPV, 为进一步利用该病毒防治包括同安钮夜蛾在内的害虫, 以及构建重组杀虫剂等奠定基础。  相似文献   

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摘要:【目的】构建RSV微型复制子(minireplicon)并进行功能学研究。【方法】构建含RSV病毒前导序列(Leader, genomic promoter, Le)、转录起始信号(gene start, GS)、多克隆酶切位点、转录终止信号(gene end, GE)和尾随序列(Trailer, antigenomic promoter, Tr)的基因片段GSGE,通过引入T7 RNA多聚酶(T7 RNA polymerase, T7 RNP)启动子、克隆入载体px8δT和插入增强型绿色荧光蛋白(Enhanced Green Fluorescent Protein, EGFP)等多步操作,获得RSV微型复制子重组质粒px8δT/GSGE1/EGFP和px8δT/GSGE2/EGFP。同时构建可表达大蛋白(large protein,L)的质粒pcDNA3.1/L及表达转录延长/转录终止抑制因子(M2 ORF 1 protein,M2-1)的质粒pcDNA3.1/M2-1。通过脂质体法共转染RSV微型复制子质粒及四种RSV核壳体蛋白质粒至可表达T7 RNP的BSRT7/5细胞系,倒置荧光显微镜及流式细胞仪分析EGFP的表达情况。【结果】成功构建了px8δT/GSGE1/EGFP和px8δT/GSGE2/EGFP及pcDNA3.1/L和pcDNA3.1/M2-1,五质粒共转染BSRT7/5细胞,倒置荧光显微镜及流式细胞仪均观察到绿色荧光的表达。【结论】构建的RSV微型复制子具有转录和复制功能,将有助于进一步开展以RSV反向遗传操作为基础的RSV疫苗研究。  相似文献   

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本研究构建了表达牛β干扰素的重组杆状病毒,感染sf9细胞后,分别采用免疫荧光和免疫印迹证实了重组BoIFN-β的表达存在于细胞内和培养上清中。采用表达绿色荧光蛋白的水疱性口炎病毒(VSV*GFP)检测分泌到细胞上清中重组BoIFN-β的抗病毒活性,可达到106.0AU/mL。同时重组BoIFN-β还可以激活鸡Mx启动子控制的萤光素酶报告基因的转录表达。综上,本研究采用杆状病毒表达系统,重组牛β干扰素以分泌形式高水平表达,且具有天然Ⅰ型干扰素的生物学活性。  相似文献   

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研究已证实杆状病毒可进入某些哺乳动物细胞,这提示了可将重组杆状病毒作为一种对哺乳动物细胞的新型基因转移载体。利用已构建的重组杆状病毒BacV-CMV-EGFPA,以含病毒的Sf9细胞培养上清同时孵育多种哺乳动物细胞,利用流式细胞术检测报告基因在不同细胞株中的转移效率及表达效率。共使用了20种哺乳动物细胞株,其中有12种人类组织细胞,7种小鼠组织细胞,1种猴组织细胞。实验结果显示携带CMV启动子的重组杆状病毒可有效进入多数哺乳动物细胞,其中对人、猴来源细胞的基因转移效率显著高于对鼠源细胞,对贴壁细胞的基因转移效率显著高于对悬浮细胞。同时,通过脂质体LipofectAMINE将携带有CMV启动子和EGFP基因的哺乳动物细胞表达质粒pCDNA3-1-EGFP分别转染部分特别是被认为杆状病毒进入能力较低的细胞株,结果显示CMV启动子在这些细胞中均可有效引导EGFP基因的表达,因此认为携带了CMV启动子的重组杆状病毒对不同哺乳动物细胞基因转移效率能基本反映出杆状病毒对不同种哺乳动物细胞的进入能力。通过综合比较携带CMV启动子的杆状病毒对不同种属及组织来源细胞的基因转移及表达效率,可看出杆状病毒对灵长类动物贴壁细胞的基因转移及表达效果是较好的,而对小鼠来源的细胞及悬浮培养细胞却并不十分理想,这表明将重组杆状病毒作为一种对哺乳动物细胞的基因转移工具,仍有其局限性,不一定对所有的细胞都合适,在应用时应予以充分考虑。  相似文献   

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【目的】泛素是一类进化上高度保守的、由76个氨基酸组成的多肽,是蛋白质泛素化修饰过程中所必需的底物分子,蛋白质泛素化修饰异常会影响宿主的生长和发育。家蚕核型多角体病毒(Bombyx mori nucleopolyhedrovirus,BmNPV)基因orf26是一个编码病毒泛素的基因,其在病毒增殖中的具体功能尚不清楚。【方法】本研究利用同源重组的方法将氯霉素(chloramphenicol)基因(Cm)表达盒替换家蚕杆状病毒泛素基因序列3’端的50个碱基对序列,构建携带Cm表达盒的重组BmNPV病毒基因组(Bm-Bacmid^(Ub-KO)),利用转座原理将绿色荧光蛋白基因(green fluorescent protein,gfp)表达盒插入Bm-Bacmid^(Ub-KO)和野生型Bm-Bacmid^(WT)转座位点,构建重组质粒Bm-Bacmid^(Ub-KO-GFP)和Bm-Bacmid^(WT-GFP),以及异位互补型的质粒Bm-Bacmid^(GFP-Ub Rep)。这些重组病毒分别转染家蚕卵巢细胞(Bombyx mori ovarian cell,BmN)后,对转染后的细胞进行绿色荧光观察。【结果】泛素基因缺失后不影响感染性病毒粒子的产生,但与野生型相比,泛素缺失型重组病毒明显降低了感染的细胞中产生的绿色荧光数量。免疫印迹分析表明,泛素缺失后降低重组病毒结构蛋白GP64和VP39在细胞中的表达水平,显著降低病毒增殖效率。生物分析表明,泛素缺失的重组病毒能延缓家蚕半致死时间15 h。【结论】BmNPV泛素基因缺失不影响感染性病毒粒子的产生,但显著降低病毒增殖效率。本研究为阐明泛素在BmNPV增殖中的具体作用提供了实验依据。  相似文献   

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Recombinant baculoviruses have emerged as a new gene delivery vehicle for mammalian cells. Thus, a shuttle promoter that mediates gene expression in both insect and mammalian cells will facilitate the development of a baculovirus vector-based mammalian cell gene delivery vehicle. This study described the generation of three recombinant baculoviruses with an EGFP reporter gene under the control of the white spot syndrome virus (WSSV) ie1 promoter, or either of two control promoters, the baculovirus early-to-late (ETL) promoter and polyhedrin promoter. The resulting recombinant baculoviruses were used to infect insect Sf9 cells and transduce several mammalian cell lines to test the expression of EGFP. We found that the WSSV ie1 promoter displayed a strong promoter activity in both insect and mammalian cells, and showed a stronger promoter activity than the ETL promoter in some mammalian cell lines. The activity of the WSSV ie1 promoter, but not the ETL promoter, can be enhanced by sodium butyrate, a histone deacetylase inhibitor. A transient plasmid transfection assay indicated that the WSSV ie1 promoter activity in mammalian cells is independent of baculovirus gene expression, differing from the ETL promoter, which was shown to be baculovirus-dependent. This study demonstrates, for the first time, that the WSSV ie1 promoter can function as a baculovirus-independent shuttle promoter between insect cells and mammalian cells. This novel shuttle promoter will facilitate the application of baculovirus-based vectors in gene expression, gene therapy, and non-replicative vector vaccines.  相似文献   

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目的:构建靶向层黏连蛋白受体(LR)基因的小发卡RNA(sh RNA)慢病毒表达载体,鉴定其对LR的抑制效果,并筛选LR稳定抑制的He La细胞株。方法:设计针对LR的sh RNA序列,将此序列和H1启动子克隆入含有EGFP报告基因的p Lenti6/v5慢病毒表达载体,通过病毒包装、细胞感染、抗生素筛选获得稳定细胞株,用real-time PCR和Western印迹检测筛选得到的稳定细胞株中LR的表达水平。结果和结论:构建了含有LR靶向sh RNA的慢病毒表达载体,包装成病毒后感染He La细胞,经抗生素筛选后获得了稳定抑制LR的细胞株;筛选后的细胞均可观察到报告基因EGFP的表达;经m RNA和蛋白水平检测,LR-sh6和LR-sh7均可显著抑制He La细胞株中LR的表达。  相似文献   

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We have developed the recombinant baculovirus pseudotyped with vesicular stomatitis virus (VSV) G protein. The VSV-G gene was under the control of the polyhedrin promoter so that it was expressed at high levels in infected insect cells but not in mammalian cells. The presence of VSV-G protein in purified baculovirus preparations was confirmed by Western analysis. This recombinant baculovirus also carried human AFP (alpha-fetoprotein) promoter for hepatocyte-specific gene expression. After an in vitro infection by a recombinant baculovirus carrying the luciferase gene under the control of human AFP promoter/enhancer (BacG-AFP-Luc(+)), the luciferase gene was expressed in AFP-producing Huh7, Hep3B, and HepG2 cell lines, but not in AFP-nonproducing cell lines. BacG-AFP-Luc(+) transduced with human hepatoma cells in vitro at an efficiency about fivefold greater than the recombinant baculovirus lacking VSV-G (the virus Bac-AFP-Luc(+)). The utilization of the AFP promoter/enhancer in a baculovirus vector could provide benefits in gene therapy applications.  相似文献   

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【目的】构建含有EGFP报告基因的口蹄疫病毒(FMDV)亚基因组复制子系统。【方法】利用融合PCR方法,将EGFP报告基因替换O型FMDV全长c DNA克隆中的前导蛋白Lb和结构蛋白P1基因,构建含有EGFP报告基因的FMDV亚基因组复制子FMDV-EGFP。复制子质粒连续转化、测序检验复制子载体的稳定性。Not I线性化的复制子FMDV-EGFP用脂质体介导法转染表达T7 RNA聚合酶的BSR/T7细胞后,不同时间段观察EGFP荧光表达情况。转染的细胞用流式、间接免疫荧光、RT-PCR和Western blot检测该复制子载体的自主复制能力和口蹄疫病毒蛋白的表达情况。【结果】复制子质粒的连续转化及测序表明报告基因可以稳定存在。FMDV-EGFP复制子转染BSR/T7细胞3 h后在荧光显微镜下能够看到绿色荧光,EGFP荧光信号随着转染时间的延长逐渐增加,并且荧光信号可持续6 d以上。转染24 h后的细胞流式分析显示转染的细胞中有6.0%发出荧光,说明构建的复制子载体能够有效表达EGFP蛋白。另外,间接免疫荧光、RT-PCR和Western blot方法也检测到该复制子RNA在BSR/T7细胞中能够进行自主复制,并且能够表达病毒的非结构蛋白。【结论】含有EGFP报告基因的FMDV亚基因组复制子的成功构建为进一步研究病毒复制、翻译机制及筛选抗病毒药物等奠定了坚实的基础。  相似文献   

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BACKGROUND: The baculovirus Autographa californica multiple nucleopolyhedrovirus (AcMNPV) has been explored as a gene delivery vehicle for a variety of mammalian cell lines. However, the transient expression nature due to its incapability to replicate in mammalian cells and insufficient transduction efficiency limit its application. METHODS: Recombinant baculovirus vectors containing genetic elements from Epstein-Barr virus (EBV), OriP and EBNA-1, which are essential for the episomal maintenance of the EBV genome in latently infected cells, were constructed and tested for their ability to sustain and express transgene (enhanced green fluorescence protein (egfp)) in mammalian cells. RESULTS: The recombinant baculovirus containing OriP and EBNA-1 genes driven by the cytomegalovirus (CMV) promoter was capable of persisting in a significant proportion of infected mammalian cells, HEK293, Vero, Cos-7, and Hone-1, without any selective pressure. In HEK293, the expression of EGFP lasted for 60 days with markedly enhanced expression level. The persistence of baculovirus genome correlated with the expression of EBNA-1. CONCLUSIONS: The improved baculovirus vector could mediate prolonged and enhanced foreign gene expression in some mammalian cells. Furthermore, an adequate level of the EBNA-1 protein was essential for the maintenance of the OriP-containing baculovirus genome. The new vector has potential for use in gene therapy.  相似文献   

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目的:利用Bac-to-Bac Baculovirus Expression System表达重组HA蛋白,Western blot及IFA方法鉴定其表达。方法:采用PCR方法扩增A/California/04/2009(H1N1)HA基因,将其克隆到pFastBacHT A载体上,重组质粒pFastBacHT-HA经双酶切及测序鉴定正确后,转化阳性重组载体进入E.coli DH10Bac感受态细胞中,通过Bluo-gal蓝白斑筛选、PCR鉴定获得重组转座子rBacmid-HA。从重组转座子中提取rBacmid-HA质粒DNA转染sf 9昆虫细胞,制备重组杆状病毒。重组杆状病毒感染sf 9细胞表达重组蛋白,Western blot及IFA鉴定重组蛋白表达情况。结论:成功构建了甲型H1N1流感病毒HA基因的昆虫杆状病毒表达载体,该表达载体转染昆虫细胞后制备的重组杆状病毒病毒滴度较高,重组杆状病毒表达的重组蛋白经Western blot 及IFA 鉴定后具有良好的免疫反应原性。  相似文献   

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Signaling lymphocytic activation molecule (SLAM; also known as CDw150) has been reported as the receptor of measles virus (MV) interacting with MV hemagglutinin (MVH). In this study, we developed a baculovirus-derived vector, the Bacmid-egfp, containing a reporter gene encoding the enhanced green fluorescent protein (EGFP) under the control of the promoter of very late polyhedrin gene from Autographa californica multiple nucleopolyhedrovirus (AcMNPV), and employed the recombinant baculovirus to express SLAM in Sf9 (Spodoptera frugiperda) cells and investigate SLAM function. The result showed that the integration of the EGFP expression cassette in the Bac-to-Bac system facilitated research with the system without introducing compromises due to its use. SLAM protein fused to His-tag was expressed in Sf9 cells through the modified Bac-to-Bac system. The expressed SLAM was identified as approximately 46 kDa, and it presented on the cell surface, as revealed by fluorescent immunochemical staining and confocal microscopic analysis. The pull-down assay proved that SLAM protein expressed in this system could interact with MVH protein. After incubating with MV vaccine strain S191, cell fusion was only observed in the Sf9 cells expressing both EGFP and SLAM from recombinant baculovirus rather than those expressing EGFP only from the modified viral vector. Furthermore, MV replicated and induced apoptosis in the Sf9 cells with SLAM expression.  相似文献   

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