首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 203 毫秒
1.
目的:构建可受Tet-on和Cre/loxP系统双调控的HCVNS5B真核表达载体,为建立可严格调控HCV NS5B蛋白表达的转基因小鼠奠定基础.方法:以真核表达载体pBI-3为载体构建骨架,在其启动子下游依次插入luc报告基因、BGH pA和NS5B基因片段,并分别在luc报告基因上游和BGH pA尾下游引入一个loxP位点.结果:成功构建了可受Tet-on和Cre/loxP系统双调控的HCV NS5B真核表达载体pBI-3/luc-BGH pA-NS5B.结论:pBI-3/luc-BGH pA-NS5B真核表达载体的成功构建为可严格调控HCV NS5B蛋白表达转基因小鼠的建立打下了良好的基础.  相似文献   

2.
植物瞬时表达是一种高效快速获得外源基因表达的方法,该系统主要应用于蛋白互作研究、调控元件功能分析、蛋白亚细胞定位和蛋白制剂合成等方面。为了进一步提高外源基因在瞬时表达体系中稳定表达效果,本研究对瞬时表达载体的多种作用元件及转化条件进行优化。首先,我们在目前最常用的双元表达载体pCambia1300骨架上,分别添加可增强特异性转录和稳定蛋白表达的新的调控元件,构建pREU-EF、pREUR-EF和pREUR-p24-EF重组表达载体,并且通过定性和定量方法分析不同元件组合、不同菌液浓度对报告基因eGFP表达的影响。激光共聚焦显微镜观察结果证明3个重组载体可在烟草叶片的细胞膜、细胞质和细胞核中快速表达报告基因;定量PCR分析表明3个重组载体中报告基因在转录表达水平上分别比原pCambia1301-eGFP载体提高了4倍、20倍和28倍;蛋白水平分析表明烟草叶片转化48 h后,pREUR-EF外源蛋白表达量明显高于pREU-EF;并且当菌液注射液浓度OD_(600)=0.4左右时,外源蛋白的表达效率最高。此外,我们还进一步把改造后的瞬时表达重组载体运用到双荧光素酶(Dual-Luciferase)报告系统中,实验证明改造后的瞬时表达重组载体可以更加快捷和有效地用于转录调控分析。因此,烟草瞬时表达载体中作用元件增加和优化组合,可以有效地提高外源蛋白的表达。  相似文献   

3.
构建可经RU486诱导表达载体,并证实其对基因表达的调控作用。通过分子生物学技术,改造了含有GLP65反式作用调控因子和GAL4杂合启动子的PRS质粒。PCR扩增BGHpolyA片段,并引入需要的酶切位点。在GLP65调控区上游添加了hCMV启动子,在GAL4杂合启动子下游加入了荧光素酶报告基因。同时,为减少两个转录单元之间的潜在干扰,加入了1.2 kb的小鸡β珠蛋白绝缘子。经PCR和限制性酶切及测序证实了载体的正确性。在体外转染HEK293细胞后,运用双荧光素酶报告基因技术鉴定了该系统的调控能力。加入诱导剂RU486后,可以诱导表达荧光素酶,并在一定范围内两者呈正比,最高可以实现荧光素酶的40余倍的表达,而没有RU486时,几乎没有报告基因的表达,表明RU486诱导调控载体构建成功,可实现对目的基因的表达时间和表达水平的精确调控,为进一步的基因调控研究和和基因治疗提供了良好的工具。  相似文献   

4.
目的:构建绿色荧光蛋白和海肾荧光素酶共同高效表达的双报告基因真核表达载体。方法:将增强型绿色荧光蛋白基因和海肾荧光素酶基因以昆虫病毒T2A序列相连接而后克隆进入pcDNA3.1(-)质粒,构建双报告基因真核表达载体。将该载体转染至COS-7细胞,通过荧光显微镜观察、照度计定量分析检测绿色荧光蛋白和海肾荧光素酶生物活性,Western Bolt检测T2A序列自剪切效率。结果:双报告基因真核表达载体能够同时表达非融合的绿色荧光蛋白和海肾荧光素酶,与单独表达载体产物具有相似的生物活性和表达效率。结论:双报告基因真核表达载体建立成功,为基因表达调控等相关领域研究提供辅助工具。  相似文献   

5.
旨在构建骨骼肌特异表达人卵泡抑制素( follistatin,Fs)基因载体并得到其稳定转染的蒙古绵羊胎儿成纤维细胞系,为后期通过体细胞核移植方法制作转FS基因克隆绵羊奠定基础.首先通过RT-PCR方法克隆得到人FS基因cDNA序列,然后与猪骨骼肌特异表达启动子α-actin以及红色荧光蛋白表达元件连接,构建成FS基因骨骼肌特异表达载体pCFCDS.脂质体介导外源表达载体转染绵羊胎儿成纤维细胞,经G418筛选后得到稳定转染的绵羊转基因细胞克隆.PCR鉴定外源基因在细胞基因组中的整合,分析转基因细胞系的核型和生长状况.结果显示,成功构建得到绵羊骨骼肌特异表达人FS基因的真核表达载体,并得到其稳定转染的转基因绵羊胎儿成纤维细胞系,为后期通过体细胞核移植方法制作转FS基因克隆绵羊奠定基础.  相似文献   

6.
增强型绿色荧光蛋白在集胞藻6803中的表达   总被引:1,自引:1,他引:0  
利用聚球藻7942热休克基因groESL的启动子和报告基因egfp,构建了表达载体pUC-Tegfp并转化集胞藻6803,并通过所制备抗体对转基因藻进行蛋白免疫印迹检测.结果发现,在转基因藻株T-egfp的细胞粗提液中含有能与eGFP抗体特异结合的蛋白质,表明外源增强型绿色荧光蛋白基因(egfp)在集胞藻6803中成功表达.  相似文献   

7.
以增强型绿色荧光蛋白和萤火虫荧光素酶为报告基因,构建了鸡卵清蛋白启动子表达载体和慢病毒载体,以巨细胞病毒 (Cytomegalovirus,CMV)启动子表达载体为对照,转染或感染鸡原代输卵管上皮细胞、鸡胚成纤维细胞、鼠3T3-L1前脂肪细胞和牛乳腺上皮细胞,通过荧光和酶活性检测,旨在筛选出用于实现转基因鸡生物反应器的高效特异性表达载体。结果发现,鸡卵清蛋白启动子表达载体转染以上4种细胞后2种标记基因均有表达,没有表现出明显的细胞特异性,且荧光素酶检测结果表明其在各细胞组中表达活性都低于CMV启动子表达载体100倍以上;慢病毒载体感染以上4种细胞后2种标记基因均有表达,在鸡输卵管上皮细胞组感染单个细胞的病毒颗粒 (Multiplicity of infection,MOI) 为20时绿色荧光蛋白表达量就可以达到CMV启动子表达载体的水平。上述结果表明,基于卵清蛋白基因调控序列构建的表达载体无法实现外源基因的高效、特异性表达,而慢病毒载体在表达活性和广泛性上可以用于进行鸡输卵管生物反应器的研究。  相似文献   

8.
旨在构建胸腺素β4(thymosin beta4,Tβ4)基因真核表达载体并转染绵羊胎儿成纤维细胞,获得稳定表达胸腺素β4及红色荧光蛋白的转基因细胞克隆。将克隆载体pMD19TT中的胸腺素β4基因亚克隆到表达载体pIRES2-DsRed2的多克隆位点,构建表达载体pIRES2-DsRed2-Tβ4,脂质体介导转染绵羊胎儿成纤维细胞,G418筛选获得稳定转染的细胞克隆。RT-PCR检测Tβ4基因在宿主细胞中的转录。测序结果显示,构建的表达载体pIRES2-DsRed2-Tβ4序列中,Tβ4基因正确连接在CMV启动子下游,顺序连接IRES2序列和红色荧光蛋白基因,载体构建正确。脂质体介导的稳定转染效率约为15%,经G418筛选得到转基因细胞克隆并高效表达红色荧光蛋白。RT-PCR检测显示外源Tβ4基因在绵羊胎儿成纤维细胞中得到转录。成功构建具有红色荧光蛋白和新霉素抗性双选择标记的胸腺素β4基因真核表达载体并稳定转染绵羊胎儿成纤维细胞,筛选得到的超表达胸腺素β4绵羊胎儿成纤维细胞系为下一步通过核移植和克隆技术获得转基因绵羊提供了条件。  相似文献   

9.
目的 构建和鉴定Hoxa11和EGFP双基因共表达真核载体.方法 采用DNA重组技术,将目的 基因Hoxa11克隆至含有报告基因EGFP的pEGFP-N1真核表达载体中,构建的真核表达载体pEGFP-Hoxa11经PCR,双酶切及基因测序鉴定;转染至CHO细胞,荧光显微镜下观察重组质粒的表达,提取细胞蛋白Western印迹检测蛋白表达.结果 pEGFP-Hoxa11重组质粒构建成功.构建的真核表达载体pEGFP-Hoxa11能在CHO细胞中有效表达.结论 成功构建了共表达Hoxa11和EGFP的真核表达载体,并能在CHO细胞中有效表达.为进一步研究Hoxa11的功能提供实验基础.  相似文献   

10.
在Invitrogen公司T-Rex诱导表达系统的基础上,将目的基因与调控蛋白基因克隆于同一载体上,并在CV1细胞中观察了四环素对该单质粒模式载体报告基因表达的诱导效应.载体在瞬时转染CV1细胞并以四环素诱导24 h后目的基因的表达水平提高了8.9倍,表明单质粒模式载体基因诱导表达的应用具有可行性.  相似文献   

11.
There is much interest in using farm animals as ‘bioreactors’ to produce large quantities of biopharmaceuticals. However, uncontrolled constitutive expression of foreign genes have been known to cause serious physiological disturbances in transgenic animals. The objective of this study was to test the feasibility of the controllable expression of an exogenous gene in the chicken. A retrovirus vector was designed to express GFP (green fluorescent protein) and rtTA (reverse tetracycline-controlled transactivator) under the control of the tetracycline-inducible promoter and the PGK (phosphoglycerate kinase) promoter, respectively. G0 founder chickens were produced by infecting the blastoderm of freshly laid eggs with concentrated retrovirus vector. Feeding the chickens obtained with doxycycline, a tetracycline derivative, resulted in emission of green body color under fluorescent light, and no apparent significant physiological dysfunctions. Successful germline transmission of the exogenous gene was also confirmed. Expression of the GFP gene reverted to the pre-induction levels when doxycycline was removed from the diet. The results showed that a tetracycline-inducible expression system in transgenic animals might be a promising solution to minimize physiological disturbances caused by the transgene.  相似文献   

12.

Background  

The tetracycline-inducible gene regulation system is a powerful tool that allows temporal and dose-dependent regulation of target transgene expression in vitro and in vivo. Several tetracycline-inducible transgenic mouse models have been described with ubiquitous or tissue-specific expression of tetracycline-transactivator (tTA), reverse tetracycline-transactivator (rtTA) or Tet repressor (TetR). Here we describe a Tet-On transgenic rat that ubiquitously expresses rtTA-M2 driven by the murine ROSA 26 promoter.  相似文献   

13.
Congenital defects in retinal pigmentation, as in oculocutaneous albinism Type I (OCA1), where tyrosinase is defective, result in visual abnormalities affecting the retina and pathways into the brain. Transgenic animals expressing a functional tyrosinase gene on an albino genetic background display a correction of all these abnormalities, implicating a functional role for tyrosinase in normal retinal development. To address the function of tyrosinase in the development of the mammalian visual system, we have generated a transgenic mouse model with inducible expression of the tyrosinase gene using the tetracycline (TET-ON) system. We have produced two types of transgenic mice: first, mice expressing the transactivator rtTA chimeric protein under the control of mouse tyrosinase promoter and its locus control region (LCR), and; second, transgenic mice expressing a mouse tyrosinase cDNA construct driven by a minimal promoter inducible by rtTA in the presence of doxycycline. Inducible experiments have been carried out with selected double transgenic mouse lines. Tyrosinase expression has been induced from early embryo development and its impact assessed with histological and biochemical methods in heterozygous and homozygous double transgenic individuals. We have found an increase of tyrosinase activity in the eyes of induced animals, compared with littermate controls. However, there was significant variability in the activation of this gene, as reported in analogous experiments. In spite of this, we could observe corrected uncrossed chiasmatic pathways, decreased in albinism, in animals induced from their first gestational week. These mice could be instrumental in revealing the role of tyrosinase in mammalian visual development.  相似文献   

14.
Congenital defects in retinal pigmentation, as in oculocutaneous albinism Type I (OCA1), where tyrosinase is defective, result in visual abnormalities affecting the retina and pathways into the brain. Transgenic animals expressing a functional tyrosinase gene on an albino genetic background display a correction of all these abnormalities, implicating a functional role for tyrosinase in normal retinal development. To address the function of tyrosinase in the development of the mammalian visual system, we have generated a transgenic mouse model with inducible expression of the tyrosinase gene using the tetracycline (TET‐ON) system. We have produced two types of transgenic mice: first, mice expressing the transactivator rtTA chimeric protein under the control of mouse tyrosinase promoter and its locus control region (LCR), and; second, transgenic mice expressing a mouse tyrosinase cDNA construct driven by a minimal promoter inducible by rtTA in the presence of doxycycline. Inducible experiments have been carried out with selected double transgenic mouse lines. Tyrosinase expression has been induced from early embryo development and its impact assessed with histological and biochemical methods in heterozygous and homozygous double transgenic individuals. We have found an increase of tyrosinase activity in the eyes of induced animals, compared with littermate controls. However, there was significant variability in the activation of this gene, as reported in analogous experiments. In spite of this, we could observe corrected uncrossed chiasmatic pathways, decreased in albinism, in animals induced from their first gestational week. These mice could be instrumental in revealing the role of tyrosinase in mammalian visual development.  相似文献   

15.
Tetracycline regulated gene expression in transgenic animals is potentially a very powerful technique (Furth et al., 1994; Gossen & Bujard 1992). We have utilized this system in an attempt to overcome the perinatal lethality resulting from constitutive transgenic expression in the heart (Valencik & McDonald, Am J Physiol Heart Circ Physiol 280: H361–H367). We found that compound hemizygous animals created by mating selected reverse tetracycline transactivator (rtTA) and transresponder (TR) lines display tightly regulated TR expression in the heart. However, we identified two fundamental problems. First, codon usage bias appeared to severely limit the expression of the rtTA driven by the cardiac -myosin heavy chain promoter. Second, co-injection of rtTA and TR transgenes led to compound hemizygous animals that exhibited unregulated TR gene expression. Codon optimization of the rtTA construct leads to marked improvement (increasing the average induction from 20-fold to 832-fold) in cardiac myocyte expression. The resulting opt-rtTA lines can be bred to homozygosity, facilitating rapid screening of F0 TR animals for doxycycline regulated transgene expression.  相似文献   

16.
17.
To accurately analyze the function of transgene(s)of interest in transgenic mice,and togenerate credible transgenic animal models for multifarious human diseases to precisely mimic human dis-ease states,it is critical to tightly regulate gene expression in the animals in a conditional manner.The abilityto turn gene expression on or off in the restricted cells or tissues at specific time permits unprecedentedflexibility in dissecting gene functions in health and disease.Pioneering studies in conditional transgene ex-pression have brought about the development of a wide variety of controlled gene expression systems,whichmeet this criterion.Among them,the tetracycline-controlled expression systems(e.g.Tet-off system andTet-on system)have been used extensively in vitro and in vivo.In recent years,some strategies derived fromtetracycline-inducible system alone,as well as the combined use of Tet-based systems and Cre/lox P switch-ing gene expression system,have been newly developed to allow more flexibility for exploring gene functionsin health and disease,and produce credible transgenic animal models for various human diseases.In thisreview these newly developed strategies are discussed.  相似文献   

18.
19.
20.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号