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1.
含霍乱肠毒素B亚单位基因植物表达载体的构建   总被引:1,自引:1,他引:0  
构建含CTB基因的植物双元表达载体,采用高保真PCR方法调出CTB基因,经测序证实核酸序列正确后,再亚克隆到含植物表达调控原件的载体上,采用冻融法和电击法,将含CTB的植物表达载体转入根癌农杆菌中,通过一系列分子克隆的方法获得含CTB基因的植物双元表达载体pBI-CTB和pBI-CTBK,并经酶切证实。  相似文献   

2.
郝岗平  边高鹏  孙凌云  张媛英   《广西植物》2007,27(1):132-136
采用高保真PCR方法从pGEM-VP1-T质粒扩出VP1基因,定向克隆到含DHA的融合中间载体pUC18-DHA,得到pUC18-VP1-DHA,经测序证实核酸序列正确后,再亚克隆到转化范围广,转化效率高,且含有双增强子的高效植物双元表达载体pGreen0029-GFP上,获得含VP1融合DHA基因的植物双元表达载体pGreen0029-VP1-DHA,采用电击法将含VP1的植物表达载体转入根癌农杆菌G3101中,获得了含VP1基因的双元植物表达载体,为下一步的广范围转基因植物表达研究奠定了基础。  相似文献   

3.
禽流感抗原基因NA,HA的克隆及其表达载体的构建   总被引:1,自引:0,他引:1  
HA和NA是禽流感病毒重要的保护性抗原基因,为了得到禽流感植物疫苗,本试验采用高保真PCR扩增方法得到目的基因,分别克隆到pMD18-T载体.经测序证实核酸序列正确后,克隆到含有GUS基因的高效植物双元表达载体pB1121上,获得含有HA/NA基因的植物双元表达载体pB1121-HA和pB1121-NA,采用冻融法将含HA/NA基因的植物双元表达载体转入根癌农杆菌LBA4404,菌液浸染生菜子叶,共培48小时后进行GUS基因表达检测,x-glue染色显蓝色,说明带有HA/NA的植物双元表达载体构建成功,为下一步的生菜转HA/NA基因研究奠定基础.  相似文献   

4.
雪莲PBP基因表达载体的构建   总被引:6,自引:2,他引:4  
目的:利用新疆雪莲特殊功能基因磷脂酰乙醇胺结合蛋白基因(XLPBP)与基础质粒构建植物表达载体pXLPBP,为介导该基因在植物中表达,以期提高植物抗寒力的转基因研究打下基础。方法:利用设计好的两端加有EcoRⅠ酶切位点的引物,对XLPBP全长基因片段进行PCR扩增,获得700bp左右大小的片段,将其纯化回收并与同样经过EcoRⅠ酶切的质粒pCAMBIA3301连接;然后采用冻融法和电击法,将含XLPBP基因的载体pCAMBIA3301转入根癌农杆菌中。结果:通过一系列分子克隆方法获得含雪莲XLPBP基因的植物表达载体,并经PCR实验证实。结论:利用以自身携带的非编码区为调控序列的XLPBP全长基因和双向表达载体pCAMBIA3301为基础构建植物表达载体,可望提高外源基因表达量。  相似文献   

5.
[目的]克隆大鼠神经营养因子BDNF基因,构建植物表达载体,在豌豆植物中表达BDNF蛋白。[方法]采用RT-PCR法克隆大鼠脑源性神经营养因子BDNF基因,构建豌豆植物表达载体p CAPE2-BDNF,利用豌豆发芽种子真空侵染法在豌豆植物中瞬时表达BDNF蛋白,以His标签抗体进行Western Blot检测目的蛋白。[结果]获得含有鼠源性神经营养因子BDNF基因的植物表达载体p CAPE2-BDNF,His标签抗体检测到目的条带。[结论]BDNF蛋白在豌豆植物中成功表达,有助于进一步对其功能活性进行分析。  相似文献   

6.
疟疾是当今最需要研究有效疫苗的主要传染病之一。AWTE基因编码恶性疟原虫多种抗原表位基因 ,CTB基因编码霍乱毒素 B亚基 ,是一种既能引起细胞免疫又能引起体液免疫的免疫载体和佐剂。把 AWTE- CTB融合基因构建到植物表达载体 p BVG- ny2上 ,通过基因枪导入法 ,转化大豆幼胚分生组织。 X- glu染色检测到 GUS基因的表达 ;抗原性分析实验结果表明 ,特异表达的融合蛋白可与 CTB和 AWTE抗体结合 ,具有 CTB抗原性。这个实验结果 ,表明疟疾多抗原表位基因首次在转基因大豆幼胚中得到瞬时表达  相似文献   

7.
CBF4基因植物表达双元载体的构建   总被引:1,自引:0,他引:1  
目的:对拟南芥CBF4基因序列进行克隆.方法:用限制性内切酶将CBF4基因从pMD18-T CBF4载体上切下,定向连接到含超强启动子的pC2301-35S-OCS表达载体上,成功构建了CBF4基因植物表达载体pC2301-35S-OCS-CBF4.利用冻融法将此表达载体导入只含辅助质粒的根癌农杆菌中,提取转化质粒,经PCR扩增和酶切验证鉴定表明.结果:CBF4基因植物表达双元载体构建成功.结论:转CBF4基因烟草的抗寒性比野生型烟草要高.  相似文献   

8.
猪干扰素-α基因的克隆及其植物表达载体的构建   总被引:1,自引:0,他引:1  
目的:克隆与分析猪干扰素-α(INF-α)基因,构建猪干扰素基因的高效植物表达载体。方法:根据NCBI中DQ248997序列设计引物,以猪的总DNA为模板,PCR扩增出猪的INF-α基因,克隆至pBS-T载体后进行序列分析,构建猪干扰素基因的植物表达载体。结果:实验所克隆序列经Blastn比对,98%的核酸序列相同,98%的蛋白质序列相同,3个非功能性氨基酸与基因库中序列不一致,推测为猪INF-α的一个亚型。构建的2个植物表达载体经BamHⅠ/SacⅠ限制性内切酶消化,均可得到570bp的目的基因。结论:成功克隆了猪的INF-α基因,并构建出含猪INF-α基因的高效植物表达载体pBI121/INF和pCAMBIA1301/INF。  相似文献   

9.
霍乱毒素B亚单位(CTB)在大肠杆菌表达体系中不能实现良好的分泌性表达。本文拟利用ctxb的自身启动子来实现CTB的高效分泌性表达。PCR方法扩增ctxb的调控序列和结构基因,克隆至pGEM-T载体,并在其下游链上肠杆菌核糖体基因的转录终止信号rmBT1T2,构建的表达质粒pGEM-T48和霍乱弧菌IEM101都实现了CTB的分泌性表达。但在pGEM-T48*TEM101)中CTB的分泌性表达量明显高于pGEM-T48(JM109)中的量,两者比较为50:1。因此,pGEM-T48(IEM101)表达体系较为理想的CTB分泌性表达体系。  相似文献   

10.
目的:VQ模序蛋白是植物中所特有的一类具有高度保守序列的蛋白质,广泛参与植物的生长发育与逆境反应,本研究拟克隆拟南芥的AtVQ29基因并进一步构建由组成型启动子CaMV 35S驱动的植物表达载体pSN1301-AtVQ29。方法:采用CTAB法提取拟南芥基因组DNA,根据已报道的AtVQ29基因序列设计并合成引物,通过PCR技术扩增获得拟南芥AtVQ29基因,经T载体克隆后测序。利用生物信息学软件对序列进行初步分析,同时基于基因重组技术构建植物表达载体。结果:序列分析表明已成功克隆AtVQ29基因,该基因编码区全长为372bp,共编码123个氨基酸残基,具有保守的VQ模序。并进一步构建了由组成型启动子CaMV 35S驱动的AtVQ29基因植物表达载体pSN1301-AtVQ29。结论:本研究所构建的AtVQ29基因植物表达载体能够在转基因植株中过量表达AtVQ29基因,为后期开展基因功能研究与植物基因改良奠定了基础。  相似文献   

11.
霍乱肠毒素B亚单位在转基因番茄中表达的研究   总被引:7,自引:0,他引:7  
将霍乱肠毒素B亚单位(CT-B)基因及内质网引导序列(SEKDEL)克隆到质粒pRTL2和pBI121中,分别构建植物双元表达载体pBI-CTB和pBI-CTBK,CT-B基因由Ca35S启动子控制表达。采用叶盘法经根癌农杆菌介导转化番茄(金丰1号,Jinfeng1)各表达载体得到一批转基因植株。经PCR和Southern blot分析表明CT-B基因整合到了番茄基因组中;ELISA和Western blot分析表明pBI-CTB和pBI-CTBK的转基因植株能够有效表达CT-B多肽,分别占番茄叶片可溶性蛋白的0.055%和0.084%。  相似文献   

12.
Expression of cholera toxin B subunit oligomers in transgenic potato plants   总被引:36,自引:0,他引:36  
A gene encoding the cholera toxin B subunit protein (CTB), fused to an endoplasmic reticulum (ER) retention signal (SEKDEL) was inserted adjacent to the bi-directional mannopine synthase P2 promoter in a plant expression vector containing a bacterial luciferase AB fusion gene (luxF) linked to the P1 promoter. Potato leaf explants were transformed by Agrobacterium tumefaciens carrying the vector and kanamycin-resistant plants were regenerated. The CTB-SEKDEL fusion gene was identified in the genomic DNA of bioluminescent plants by polymerase chain reaction amplification. Immunoblot analysis indicated that plant-derived CTB protein was antigenically indistinguishable from bacterial CTB protein, and that oligomeric CTB molecules (Mr 50 kDa) were the dominant molecular species isolated from transgenic potato leaf and tuber tissues. Similar to bacterial CTB, plant-synthesized CTB dissociated into monomers (Mr 15 kDa) during heat or acid treatment. The maximum amount of CTB protein detected in auxin-induced transgenic potato leaf and tuber tissues was approximately 0.3% of total soluble plant protein. Enzyme-linked immunosorbent assay methods indicated that plant-synthesized CTB protein bound specifically to GM1-ganglioside, the natural membrane receptor of cholera toxin. In the presence of the SEKDEL signal, CTB protein accumulates in potato tissues and is assembled into an oligomeric form that retains native biochemical and immunological properties. The expression of oligomeric CTB protein with immunological and biochemical properties identical to native CTB protein in edible plants opens the way for preparation of inexpensive food plant-based oral vaccines for protection against cholera and other pathogens in endemic areas throughout the world  相似文献   

13.
14.
本文首次报道疟疾多表位抗原基因在转基因烟草中表达成功。疟疾是当今最需要研究有效疫苗的主要传染病之一。过去的研究表明,AWTE基因编码的疟疾多种抗原表位是有效的抗疟表位,CTB基因编码的霍乱毒素B亚基,是一种既能引起细胞免疫又能引起体液免疫的免疫载体和佐剂。本研究把AWTE-CTB融合基因构建到植物表达载体pBVG-ny1上,采用共转化的方法,通过基因枪导入转化烟草。经PCR扩增AWTE-CTB基因片段检测,证实了疟疾多表位抗原基因在转基因烟草中的整合。SDS-PAGE蛋白电泳结果显示转基因烟草中表达了AWTE-CTB融合基因分子量相同的特异蛋白。经抗原性分析实验和Western免疫印迹实验结果表明,特异表达的融合蛋白可与CTB和AWTE抗体结合,具有CTB和AWTE抗原性。  相似文献   

15.
Dengue virus (DENV) infection is an emerging global health threat. DENV consists of four distinct serotypes, necessitating a tetravalent vaccine. In this study, expression of consensus envelope protein domain III (cEDIII) fused to cholera toxin B subunit (CTB) in transgenic rice calli was improved using the luminal binding protein BiP at the N-terminus and the SEKDEL signal sequences at the C-terminus, targeting the recombinant protein to endoplasmic reticulum (ER). We found that the fusion protein showed higher levels of expression when compared to the fusion proteins using rice amylase 3D (RAmy3D) or CTB native signal sequence only. The CTB-cEDIII fusion protein was evaluated as an oral dengue vaccine candidate in mice. Serotype specific systemic IgG antibodies and specific IgA response in feces were detected and furthermore, T cell proliferation and high frequency antibody-secreting B cells were detected in the spleen. These results suggest the possible use of plant-based dengue tetravalent vaccine targeted to the mucosal immune system for induction of systemic and mucosal immune responses to DENV infection.  相似文献   

16.
Nicotiana tabacum var. Samsun was transformed via Agrobacterium-mediated transformation with a gene encoding the cholera toxin B subunit (CTB) of Vibrio cholerae, modified to contain a sequence coding for an endoplasmic reticulum retention signal (SEKDEL), under the control of the cauliflower mosaic virus 35S promoter. Total protein from the transgenic leaf tissue was isolated and an aliquot containing 5 g recombinant CTB was injected intradermally into Balb/c (H2Kd) mice. CTB-specific serum IgG was detected in animals that had been administered plant-expressed or native purified CTB. A T-cell proliferation study using splenocytes and cytokine estimations in supernatants generated by in vitro stimulation of macrophages isolated from the immuno-primed animals was carried out. Inhibition of proliferation of T lymphocytes was observed in splenic T lymphocytes isolated from animals injected with either native or plant-expressed CTB. Macrophages isolated from mice immunised with native or plant-expressed CTB showed enhanced secretion of interleukin-10 but secretion of lipopolysaccharide-induced interleukin-12 and tumor necrosis factor alpha was inhibited. These studies suggest that plant-expressed protein behaved like native CTB with regards to effects on T-cell proliferation and cytokine levels, indicating the suitability of plant expression systems for the production of bacterial antigens, which could be used as edible vaccine. The transgene was found to be inherited in the progeny and was expressed to yield a pentameric form of CTB as evident by its interaction with GM1 ganglioside.Abbreviations BAP 6-Benzylaminopurine - Con A Concanavilin A - CTB Cholera toxin B subunit - ctxB Gene encoding cholera toxin B subunit - ELISA Enzyme-linked immunosorbent assay - HRP Horseradish peroxidase - IL-10 Interleukin-10 - IL-12 Interleukin-12 - LPS Lipopolysaccharide - NAA Naphthaleneacetic acid - PBS Phosphate-buffered saline - TNF Tumour necrosis factor alphaCommunicated by H. Uchimiya  相似文献   

17.
《The Journal of cell biology》1989,109(6):2633-2640
The sequence Ser-Glu-Lys-Asp-Glu-Leu (SEKDEL) has been shown to be a signal which leads to retention of at least two proteins in the endoplasmic reticulum of animal cells (Munro and Pelham, 1987). In this study we tested the function of this signal by appending it to two secretory proteins, rat growth hormone and the alpha subunit of human chorionic gonadotrophin (hCG-alpha). We used oligonucleotide-directed mutagenesis and expression to generate proteins with SEKDEL added to the exact COOH termini and then carried out a detailed analysis of their transport in monkey COS cells. We found that transport was not blocked for either protein, but rather that the half-time for secretion was increased about sixfold for both proteins. Analysis of oligosaccharide processing on hCG-alpha-SEKDEL and indirect immunofluorescence microscopy on cells expressing both proteins was consistent with a retardation of transport between the endoplasmic reticulum and the Golgi apparatus. A change in the last amino acid of the SEKDEL sequence from Leu to Val abolished the retardation almost completely, suggesting a highly specific interaction of the sequence with a receptor. A change in the first amino acid had little or no effect on retardation. We conclude that the SEKDEL signal can have strong effects on reducing the rate of protein exit from the endoplasmic reticulum without generating absolute retention. Presumably other features of protein structure must be important to generate absolute retention.  相似文献   

18.
Processes associated with late events of N-glycosylation within the plant Golgi complex are a major limitation to the use of plant-based systems to produce recombinant pharmaceutical proteins for parenteral administration. Specifically, sugars added to the N-glycans of a recombinant protein during glycan maturation to complex forms (e.g. β1,2 xylose and α1,3 fucose) can render the product immunogenic. In order to avoid these sugars, the human enzyme α-L-iduronidase (IDUA, EC 3.2.1.76), with a C-terminal ER-retention sequence SEKDEL, was expressed in seeds of complex-glycan-deficient (cgl) mutant and wild-type (Col-0) Arabidopsis thaliana, under the control of regulatory (5'-, signal-peptide-encoding-, and 3'-) sequences from the arcelin 5-I gene of Phaseolus vulgaris (cgl-IDUA-SEKDEL and Col-IDUA-SEKDEL, respectively). The SEKDEL motif had no adverse effect on the specific activity of the purified enzyme. Surprisingly, the majority of the N-glycans of Col-IDUA-SEKDEL were complex N-glycans (i.e. contained xylose and/or fucose) (88 %), whereas complex N-glycans comprised a much lower proportion of the N-glycans of cgl-IDUA-SEKDEL (26 %), in which high-mannose forms were predominant. In contrast to the non-chimeric IDUA of cgl seeds, which is mainly secreted into the extracellular spaces, the addition of the SEKDEL sequence to human recombinant IDUA expressed in the same background led to retention of the protein in ER-derived vesicles/compartments and its partial localization in protein storage vacuoles. Our data support the contention that the use of a C-terminal ER retention motif as an effective strategy to prevent or reduce complex N-glycan formation, is protein specific.  相似文献   

19.
The cholera toxin B subunit (CTB) contains five identical polypeptides and targets glycosphingolipid receptors on eukaryotic cell surfaces. Increased expression of CTB in plants is critical for the development of edible vaccines. In this study, the coding sequence of the CTB gene was optimized, based on the modification of codon usage to that of tobacco plant genes and the removal of mRNA-destabilizing sequences. The synthetic CTB gene was cloned into a plant expression vector and expressed in tobacco plants under the control of the CaMV 35S promoter. The recombinant CTB protein constituted approximately 1.5% of the total soluble protein in transgenic tobacco leaves. This level of CTB production was approximately 15-fold higher than that in tobacco plants that were transformed with the bacterial CTB gene. The recombinant CTB produced by tobacco plants demonstrated strong affinity for GM1-ganglioside, which indicates that the sites required for binding and proper folding of the pentameric CTB structure were conserved. This is the first report on the optimization of the CTB-coding sequence to give a dramatic increase in CTB expression in plants.  相似文献   

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