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1.
外源基因在昆虫杆状病毒表达系统中的表达   总被引:1,自引:1,他引:0  
随着杆状病毒载体和筛选方法的不断改进,通过Bac-to-Bac方法可以使杆状病毒最大重组率达到100%,缩短了构建重组载体的时间,极大提高了工作效率。另外,研究者开发了一些新的宿主域扩大的昆虫杆状病毒载体,能够在家蚕或蛹内进行高水平表达重组蛋白。昆虫杆状病毒表达系统具有完备的翻译后加工修饰功能和高效表达外源蛋白的能力等特点,是一种非常理想的真核表达系统。利用该表达系统现已成功表达了约千种外源蛋白。以重组杆状病毒为载体的昆虫表达系统、外源基因在该表达系统中的表达情况及在农业领域中的应用进行了介绍。  相似文献   

2.
重组昆虫杆状病毒构建和筛选技术进展   总被引:4,自引:0,他引:4  
曹翠平  吴小锋 《昆虫学报》2004,47(6):837-843
昆虫杆状病毒作为高效的真核表达载体,现已广泛应用于各种外源目的基因的表达。但由于重组病毒产生的比例很低(通常只有0.1%~1%),成为制约该系统应用的技术瓶颈。本文概括了近年来发展的重组病毒的构建和筛选方法,主要介绍了杆状病毒的线性化技术和利用大肠杆菌-昆虫细胞穿梭载体构建并筛选重组杆状病毒的技术进展。  相似文献   

3.
昆虫杆状病毒表达系统的研究与应用进展   总被引:10,自引:1,他引:9  
昆虫杆状病毒表达系统 (BEVS)因具有完备的翻译后加工修饰系统和高效表达外源基因的能力等特点 ,现已成功表达了近千种高价值蛋白。随着杆状病毒载体的不断改进 ,该系统获得重组病毒的几率已从最初的 0 1 %~ 1 %提高到现在的 80 %~ 90 %以上 ,并且出现了一些新的宿主域扩大的昆虫杆状病毒载体和高水平表达重组蛋白的昆虫细胞系。杆状病毒载体将在未来药物研发、疫苗生产、基因治疗、重组杆状病毒杀虫剂等领域得到广泛应用。但存在的一些问题如杆状病毒的基因组学研究相对薄弱 ,有关病毒晚期基因的高表达和调控机制等还不十分清楚 ,表达产物的纯化比较困难 ,多元表达等方面的技术还不够成熟等 ,均有待进一步解决。  相似文献   

4.
昆虫杆状病毒表达载体系统已广泛应用于表达重组蛋白。近年来研究显示,含有哺乳动物细胞启动子元件的重组杆状病毒可有效地转导多种哺乳动物原代和传代细胞。借助于杆状病毒载体,已成功实现了外源基因在哺乳动物细胞内的瞬时或稳定表达;而在体内,杆状病毒可被血清中的补体成份所灭活,从而抑制了转导效率,但是通过对杆状病毒进行修饰(如伪型杆状病毒),可以抵抗补体的灭活作用。研究人员对杆状病毒转导机制进行了探索,但是至今尚未完全弄清。杆状病毒基因转移系统最大特点是,杆状病毒能在昆虫细胞内大量繁殖,而不能在哺乳动物细胞内复制,因而具有很高的生物安全性;同时,此系统还具有操作简便、插入外源基因容量大等优点,使得杆状病毒作为哺乳动物细胞的基因传递载体,具有广泛的应用前景。  相似文献   

5.
杆状病毒表达系统的发展   总被引:3,自引:0,他引:3  
杆状病毒是近年来被广泛用于高效表达外源蛋白的载体系统,本文就杆状病毒表达系统的生物学特性、转染载体、重组病毒的筛选、基因表达调控及其发展应用等方面作一概述。  相似文献   

6.
将编码鸡的白细胞介素 1 8(chickeninterleukine 1 8,ChIL 1 8)成熟蛋白的基因亚克隆到杆状病毒转移载体pMelBacB上 ,构建真核转移载体pMelBacBChIL 1 8,经限制性内切酶消化、ChIL 1 8特异引物PCR鉴定和确证性序列测定 ,证明目的基因正确克隆到载体的预期位点。将纯化的pMelBacBChIL 1 8质粒与杆状病毒DNA(Bac N BlueTM DNA)共转染sf9昆虫细胞 ,经四轮蓝斑筛选纯化 ,获得了重组杆状病毒 ,命名为rBaculovirusChIL 1 8。提取病毒染色体DNA ,经ChIL 1 8特异引物和重组杆状病毒特异引物PCR鉴定 ,证明获得了纯化的重组杆状病毒。用该重组病毒接种sf9昆虫细胞 ,收获接种后不同时间的细胞进行SDS PAGE电泳。结果表明ChIL 1 8基因在昆虫细胞中获得了表达 ,表达的重组蛋白分子量约为 2 3kDa。应用在大肠杆菌原核表达系统中表达的重组蛋白制备的兔抗ChIL 1 8多克隆抗体进行Westernblot分析 ,表明本研究真核系统表达的ChIL 1 8成熟蛋白和前期原核系统表达的ChIL 1 8成熟蛋白均具有生物学活性。  相似文献   

7.
家蚕核型多角体病毒的基因组结构及其表达模式   总被引:2,自引:0,他引:2  
吴小锋 《病毒学报》2006,22(4):324-328
Bombyx mori nucleopolyhedrovirus(BmNPV)是家蚕(Bombyx mori)的重要病原,属于杆状病毒。20世纪80年代后期发展了基于杆状病毒作为载体的昆虫杆状病毒表达系统技术。由于家蚕可以规模化饲养,利用重组的BmNPV以家蚕作为“生物工厂”生产重组蛋白因具有低成本、适合产业化的优点而受到高度重视。BmNPV的分子生物学研究以及作为表达载体的应用在过去十几年间得到了较快发展,本文主要就近年来关于BmNPV的基因组结构及其基因表达模式的研究作一概述。  相似文献   

8.
目的研究蛇毒金属蛋白酶抑制剂BJ46a在杆状病毒表达系统的表达及宿主细胞Sf9超微结构的变化。方法将构建的杆状病毒重组穿梭载体Bacmid BJ46a,经Cellfectin脂质体介导转染Sf9昆虫细胞,获重组杆状病毒颗粒;以高滴度病毒感染Sf9昆虫细胞,行Western blot观察BJ46a融合蛋白的表达。在病毒扩增、蛋白表达过程应用透射电镜和超薄切片技术观察Sf9细胞超微结构的变化。结果Western blot分析表明:在转染病毒的Sf9细胞出现BJ46a融合蛋白表达条带。电镜观察表明:Sf9细胞在病毒扩增过程,细胞核增大,病毒发生基质形成,杆状病毒在其周围装配。蛋白表达期间,杆状病毒量剧增,细胞核内外存在大量丝状纤维。结论BJ46a基因可在杆状病毒表达系统成功表达,并伴随着宿主细胞超微结构的显著变化,其结果为杆状病毒表达系统的研究奠定坚实的基础。  相似文献   

9.
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   

10.
本研究利用Bac-To-Bac杆状病毒表达系统构建重组禽呼肠孤病毒(Avian reovirus,ARV)σC基因的杆状病毒,感染sf9细胞获得表达重组蛋白。首先,将ARVσC基因克隆至pFastBacHTA载体,构建重组供体载体pFσC,将其转化大肠杆菌DHl0Bac感受态细胞,使σC基因整合到Bacmid穿梭载体中,获得重组穿梭载体BacmidσC。通过脂质体介导将其转染到sf9昆虫细胞中,获得重组杆状病毒rBacσC。通过Western Blot、间接免疫荧光试验(IFA)进行检测,结果显示:σC蛋白在重组杆状病毒rBacσC感染的sf9昆虫细胞中获得正确表达,分子质量约为37kD,表达的σC蛋白具有良好的反应活性。  相似文献   

11.
The baculovirus vector systems has been extensively used for the expression of foreign gene products in insect and mammalian cells. New advances increase the possibilities and applications of the baculovirus expression system, which has the capability to express multiple genes simultaneously within a single infected insect cells and to use recombinant virus with mammalian cell-active expression cassettes to permit expression of recombinant proteins in mammalian cells in vitro and in vivo. Future investigations of the baculovirus expression system designed for specific target cells, can open wide variety of applications. This review summarizes the recent achievements in applications the baculovirus vector systems and optimization recombinant protein expression in both insect and mammalian cell lines.  相似文献   

12.
Today, many thousands of recombinant proteins, ranging from cytosolic enzymes to membrane-bound proteins, have been successfully produced in baculovirus-infected insect cells. Yet, in addition to its value in producing recombinant proteins in insect cells and larvae, this viral vector system continues to evolve in new and unexpected ways. This is exemplified by the development of engineered insect cell lines to mimic mammalian cell glycosylation of expressed proteins, baculovirus display strategies and the application of the virus as a mammalian-cell gene delivery vector. Novel vector design and cell engineering approaches will serve to further enhance the value of baculovirus technology.  相似文献   

13.
The insect-baculovirus expression system has proved particularly useful for producing recombinant proteins that are biologically active. Overexpression of foreign proteins using the recombinant baculovirus system is often accompanied by aggregation of the overexpressed protein, which is thought to be due to a limitation of the translated protein folding in the infected cells. Co-infection of a recombinant baculovirus capable of expressing the human chaperone Hsp70 slightly increased the solubility of the overexpressed Epstein-Barr virus replication protein, BZLF1. Co-expression of Hsp70 and its co-factor, Hsdj or Hsp40, was here found to improve the solubility of the target protein several fold. Thus, a baculovirus expression system producing these molecular chaperones may find application for improved production of target foreign gene products in insect cells.  相似文献   

14.
Rapid expression of recombinant proteins for structure determination is one of the major challenges in pharmaceutical and academic research, since the number of potential drug targets has increased significantly in the last decade. Despite the fact that the baculovirus expression vector system is widely used for this purpose, the system is hampered by three very slow and tedious procedures, namely generation of high titer baculovirus stock, determination of the virus titer and discovery of the best conditions for protein expression. We herein describe the development of the ultraBac system to address and overcome these issues for protein expression in insect cells. We have established a new baculovirus expression technology for insect cells that is based on co-expression of GFP with target genes, a new regime for cell culturing and a highly efficient purification and enrichment procedure for recombinant baculovirus particles. Co-expression of GFP is used to monitor the infection of insect cells, to simplify titer determination and to optimize expression conditions. The new regime for cell culturing with increased viability of non-infected insect cells and its combination with the massive enrichment of virus particles via high-speed centrifugation enables the production of large amounts of recombinant virus in a very short period of time. By combining these techniques and by using the bicistronic vector pUltraBac-1, we have been able to cut the time-lines for protein expression in insect cells by half, approaching those for protein production in Escherichia coli. This new expression system is a significant step forward towards industrialized protein production in both, industry and academia.  相似文献   

15.
As a protein expression vector,the baculovirus demonstrates many advantages over other vectors.With the development of biotechnology,baculoviral vectors have been genetically modified to facilitate hig...  相似文献   

16.
Virus-like particles (VLPs) can be produced in recombinant protein production systems by expressing viral surface proteins that spontaneously assemble into particulate structures similar to authentic viral or subviral particles. VLPs serve as excellent platforms for the development of safe and effective vaccines and diagnostic antigens. Among various recombinant protein production systems, the baculovirus–insect cell system has been used extensively for the production of a wide variety of VLPs. This system is already employed for the manufacture of a licensed human papillomavirus-like particle vaccine. However, the baculovirus–insect cell system has several inherent limitations including contamination of VLPs with progeny baculovirus particles. Stably transformed insect cells have emerged as attractive alternatives to the baculovirus–insect cell system. Different types of VLPs, with or without an envelope and composed of either single or multiple structural proteins, have been produced in stably transformed insect cells. VLPs produced by stably transformed insect cells have successfully elicited immune responses in vivo. In some cases, the yield of VLPs attained with recombinant insect cells was comparable to, or higher than, that obtained by baculovirus-infected insect cells. Recombinant insect cells offer a promising approach to the development and production of VLPs.  相似文献   

17.
The four main gene expression systems currently used to produce recombinant proteins are the prokary-otic, yeast, insect cell, and mammalian cell expression systems. The baculovirus expression vector system (BEVS) is a protein production system which uses a recombinant baculovirus harboring a foreign gene of interest to produce recombinant protein in an insect or its cultured cells. BEVS has many advantages: (i) BEVS requires less time to establish the production system than is needed in a…  相似文献   

18.
The baculovirus/insect cell system has been widely used for recombinant protein production. Since the finding that baculovirus was able to infect hepatocytes in 1995, various attempts to utilize baculovirus as a gene delivery vehicle into mammalian cells have been reported. In this study, we intended to explore the possibility of utilizing a baculovirus/mammalian cell system as a nonlytic, continuous protein production system. A recombinant baculovirus vector carrying enhanced green fluorescent protein (EGFP) under the control of cytomegalovirus immediate-early (CMV-IE) promoter was constructed. This virus was used to infect four common mammalian cell lines, and HeLa was found to yield the highest expression level. Additions of butyrate and valproic acid both enhanced the expression level, but butyrate exhibited a more profound effect. More importantly, HeLa cells were found to be superinfected by baculovirus, a result not observed in the conventional baculovirus/insect cell system. The effects of multiplicity of infection (MOI) and infection timing were also compared. High MOI up to 800 increased the expression in the short term (4 days), but the relatively higher cell death and lower cell density compromised the overall protein yield thereafter. The highest overall expression for a long term was obtained at MOI = 200 when the cells were initially infected at the mid-exponential phase and superinfected with additional baculovirus (MOI = 200) together with a one-time supplement of butyrate. In summary, the strategic infection and feeding enhanced the expression level 9-fold (compared with unsuperinfected culture) and prolonged the duration of expression to 16 days. This study reveals that this baculovirus/mammalian cell system has great potential to become a novel continuous, nonlytic expression system.  相似文献   

19.
Baculovirus expression vector system (BEVS) in host insect cells is a powerful technology to produce recombinant proteins, as well as virus-like particles (VLP). However, BEVS is based on baculovirus infection, which limits the recombinant protein production by inducing insect cell death. Herein a new strategy to enhance cell life span and to increase recombinant protein production was developed. As baculovirus infection induces cellular oxidative stress, the ability of several antioxidants to inhibit cell death was tested during infection. The production of rotavirus structural proteins was used as model to analyse this new strategy. We found that only catalase is able to partially prevent cell death triggered by baculovirus infection and to inhibit lipid peroxidation. An increase in recombinant protein production was coupled with the partial cell death inhibition. In summary, the addition of catalase is a promising strategy to improve recombinant protein production in BEVS, by delaying insect cell death.  相似文献   

20.
昆虫杆状病毒系统表达外源蛋白的糖基化   总被引:4,自引:0,他引:4  
昆虫表达系统作为一类应用广泛的真核表达系统 ,具有与多数高等真核生物相类似的翻译后修饰的过程。但其生产的重组糖蛋白一般仅具有高甘露糖或寡甘露糖型糖链 ,难以生成复杂构型糖链成为该系统的缺陷之一。综述了目前昆虫杆状病毒系统表达外源蛋白的糖基化研究进展。  相似文献   

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