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1.
目的:PiggyBac(PB)转座子是一种可移动的遗传元件,采用“剪切和粘贴”机制在载体和染色体之间进行转座;通过将转座子元件和转座酶表达框整合到一个表达载体中,构建简便易用的二合一PB转座系统。方法:通过聚合酶链式反应(polymerase chain reaction,PCR)获取PiggyBac转座系统所需转座子元件和转座酶表达框,利用T4 DNA连接酶将转座酶表达框插入到pUC18载体上,再利用Gibson同源重组技术将转座子元件与重组载体结合构建二合一PB转座系统;使用该系统携带的增强型绿色荧光蛋白(enhanced green fluorescent protein,EGFP)以及功能性损伤抑制蛋白(damage-suppressing protein,DSUP)检测其有效性及可靠性。结果:在所有筛选获得的嘌呤霉素抗性细胞中,EGFP都是明亮可见;利用此二合一PB转座系统成功获得了可高效表达功能性损伤抑制蛋白的稳定细胞系,证明外源基因可被有效整合到基因组DNA中并表达。结论:成功构建了新型二合一PB转座系统,使稳定表达细胞系的建立更加经济简便。  相似文献   

2.
郭秀明  黄创新  沈睿杰  蒋霞云  陈杰  邹曙明 《遗传》2013,35(8):999-1006
文章通过构建带金鱼Tgf2转座子左右臂、斑马鱼肌球蛋白轻链2(Mlyz2)启动子和红色荧光蛋白(RFP)的供体质粒Tgf2-Mlyz2-RFP, 与Tgf2转座酶mRNA共同显微注射入团头鲂1~2细胞期受精卵, 检测金鱼Tgf2转座子在团头鲂基因组中的整合效率。在团头鲂出膜仔鱼、30 d和180 d幼鱼阶段, 可在鱼体背部和侧面肌肉观察到荧光, 红色荧光蛋白的表达率为48.1%, PCR检测结果显示, 金鱼Tgf2转座系统在团头鲂成鱼基因组中的整合效率为31.5%; 对5尾阳性团头鲂进行了RT-PCR检测, 3尾团头鲂在12个组织均能检测到较高的RFP基因的表达, 2尾团头鲂仅在肌肉、皮和肾脏中存在较高的RFP基因的表达, 显示RFP基因在不同转基因团头鲂个体中的组织表达存在一定差异; 通过检测Tgf2转座子在团头鲂基因组插入位置5′端的侧翼序列, 检测出金鱼Tgf2转座系统在转基因团头鲂中的拷贝数至少为2个, 每尾鱼的平均拷贝数大约为5个, 50%以上插入位点的侧翼序列可找出其它脊椎动物的相关同源性序列。研究结果显示金鱼Tgf2转座子可高效介导基因在团头鲂基因组中插入, 为开展团头鲂转基因和基因捕获研究奠定了一定的基础。  相似文献   

3.
利用本实验室构建的转Ac(Ac TPase)及Ds(Dissociation)的水稻(Oryza sativa L.)转化群体,配置了Ae×Ds的杂交组合354个。检测了转基因植株的T-DNA插入位点右侧旁邻序列,研究了Ac/Ds转座系统在水稻转化群体中的转座活性。结果表明,有些转化植株T-DNA插入位点相同或相距很近,插入位点互不相同的占65.4%。检测到T-DNA可插入到编码蛋白的基因中。在Ac×Ds的F2代中,Ds因子的转座频率为22.7%。对Ac×Ds杂交子代中Ds因子旁侧序列的分析,进一步表明了Ds因子在水稻基因组中的转座活性,除了从原插入位点解离并转座到新的位点之外,还有复制——转座和小完全切离等现象。获得的旁侧序列中,有些序列与GenBank中的数据没有同源性,目前有2个DNA片段在GenBank登录。探讨了构建转座子水稻突变体库进行水稻功能基因组学研究的策略。  相似文献   

4.
利用本实验室构建的转Ac(AcTPase)及Ds(Dissociation)的水稻(Oryza sativa L.)转化群体,配置了Ac×Ds的杂交组合354个.检测了转基因植株的T-DNA插入位点右侧旁邻序列,研究了Ac/Ds转座系统在水稻转化群体中的转座活性.结果表明,有些转化植株T-DNA插入位点相同或相距很近,插入位点互不相同的占65.4%.检测到T-DNA可插入到编码蛋白的基因中.在Ac×Ds的F2代中,Ds因子的转座频率为22.7%.对Ac×Ds杂交子代中Ds因子旁侧序列的分析,进一步表明了Ds因子在水稻基因组中的转座活性,除了从原插入位点解离并转座到新的位点之外,还有复制--转座和不完全切离等现象.获得的旁侧序列中,有些序列与GenBank中的数据没有同源性,目前有2个DNA片段在GenBank登录.探讨了构建转座子水稻突变体库进行水稻功能基因组学研究的策略.  相似文献   

5.
钱秋杰  车家倩  叶露鹏  钟伯雄 《遗传》2014,36(10):965-973
piggyBac (PB)转座系统具有转座效率高、删除精确、半随机插入和携带片段较大等优点。但是作为一种转基因实验的工具,特别是在哺乳动物个体水平的转基因方面,还需要提高其转基因效率,并降低外源基因随机插入对内源基因破坏的风险。近年来的研究结果显示,PB转座系统得到了进一步改进:采用PB转座酶与DNA特异性结合蛋白融合而构成的融合型转座酶,表现出外源片段有插入到染色体靶向位点的倾向;采用突变体筛选的方法提高了PB转座酶的活性,获得了只具有切除活性而没有插入活性的新型PB转座酶;采用PB转座系统与细菌人工染色体(Bacterial artificial chromosomes, BAC)载体联合使携带的外源片段长度提高到了207 kb。改进后的PB转座系统在基因组研究、基因治疗、诱导多能干细胞(Induced pluripotent stem cells, iPSCs)诱导及其分化方面发挥了较大的作用。文章对PB转座系统的最新研究进展和应用前景进行了综述。  相似文献   

6.
【目的】通过检测黑腹果蝇Drosophila melanogaster中piggyBac (PB)转座子AgoPLE1.1的转化活性,明确AgoPLE1.1开发为昆虫转基因载体的潜力。【方法】构建AgoPLE1.1转座酶辅助质粒pAgoHsp和带有红色荧光标记的供体质粒pXLAgo-PUbDsRed,辅助质粒和供体质粒以170 ng/μL∶400 ng/μL, 90 ng/μL∶200 ng/μL和90 ng/μL∶100 ng/μL 3种不同的比例混合后分别注射新鲜的W1118 黑腹果蝇胚胎,筛选注射后代中的转基因黑腹果蝇个体;利用Southern杂交验证转基因黑腹果蝇中AgoPLE1.1转座子的插入拷贝数;利用染色体步移技术克隆AgoPLE1.1插入位点旁侧序列,明确AgoPLE1.1转座子的转座特征。【结果】AgoPLE1.1转座子在黑腹果蝇中具有转化活性,转基因频率为1.32%~1.94%。Southern杂交结果显示,AgoPLE1.1转座子在黑腹果蝇中至少有6个插入位点。染色体步移法克隆了其中4个位点,分别位于黑腹果蝇的3R, 3L, 2L和X染色体,并且AgoPLE1.1转座子在黑腹果蝇染色体中的整合带有供体质粒的骨架。【结论】PB转座子AgoPLE1.1仅可以在黑腹果蝇中以较低的频率进行非精确的剪切和转座,不具有开发为新型昆虫转基因载体的潜力。  相似文献   

7.
转座子Sleeping Beauty和PiggyBac   总被引:2,自引:0,他引:2  
近10年来,得益于转座子Sleeping Beauty(SB)和PiggyBac(PB)的发现和完善,转座子作为一种遗传工程工具在脊椎动物的基因遗传研究中得到广泛应用.SB和PB宿主范围极其广泛,从单细胞生物到哺乳动物都能够发挥作用.转座过程需要转座序列和转座酶的存在,类似于"剪切"、"粘贴"的方式.转座子载体系统转座时可携带一段外源DNA序列,利用这一特性可以用于实现目的基因的转移,现已广泛用于转基因动物、基因功能研究、基因治疗等领域.当转座系统与基因捕获技术相结合,不仅可研究插入突变基因的功能,还能通过所携带的报告基因获得捕获基因的表达图谱.作为非病毒载体的SB和PB转座系统,由于具有高容量、高效率和高安全性等优势,并且PB在转座后不留任何足迹,不会造成遗传物质的不可预测改变,在动物基因工程以及基因治疗方面具有诱人的前景.  相似文献   

8.
piggyBac转座子及其在转基因昆虫中的应用   总被引:1,自引:0,他引:1  
piggyBac是一种从粉纹夜蛾Trichoplusiani.中分离到的、具有TTAA插入位点特异性的DNA转座子。piggyBac可在昆虫基因组中准确切离,转化频率较高,并且不受宿主因子的限制,是目前转基因昆虫研究中应用最广的转座子载体。近年来的研究发现,piggyBac类转座子广泛分布于昆虫和其他生物基因组中。文章从piggyBac的结构、转座特性、在转基因昆虫中的应用以及piggyBac类转座子的分布等几个方面综述了piggyBac的研究进展。  相似文献   

9.
DNA转座子作为一种遗传工程工具已广泛应用于多物种的转基因及产生插入突变等研究。目前,在哺乳动物中有转座活性的转座子可分为三类:1)hAT样转座子;2)Tcl样转座子包括Sleeping Beauty和FrogPrince;3)PiggyBac转座子家族。其中甘蓝蠖度尺蛾(Cabbage looper moth Trichoplusia ni)来源的PiggyBac转座子是目前在哺乳动物中活性最高的转座子,并且可以携带十几kb的外源基因转座而不影响其效率,使其在哺乳动物的转基因、癌基因的发现、基因治疗研究方面具有巨大的应用潜力。此外,PB的无痕迹转座对于无转基因、无遗传物质改变的诱导多潜能干细胞(iPS)研究也具有非常重要的意义。本文主要对针对PB在哺乳动物中的应用现状及前景作一介绍。  相似文献   

10.
2.在根瘤菌研究中成功地运用了转座子诱变技术。转座子(Transposon)是一种特殊的DNA短片段,它带有抗药性基因,并具有在DNA复制子之间转座插入的能力,转座的发生并不需要recA基因产物,一些转座子象Tn 5的转座插入位点的分布是相当随机的,但另一些象Tn 10,它的转座插入似乎具有“热点”(Hot spot),转座子插入到一个新位点时,被插入位点原基因的连续性受到阻断,因而该基因的功  相似文献   

11.
转基因细胞株的建立能够为转基因体细胞克隆技术奠定重要基础。该实验利用MSTN干扰载体,转染鲁西黄牛胎儿成纤维细胞,获得5个相应的转基因单克隆细胞株。采用Realtime PCR和高效热不对称互交式PCR(hiTAIL-PCR)技术检测细胞克隆中MSTN表达载体的拷贝数及其在牛基因组中的整合位点。结果表明,荧光定量PCR有效检测到5个细胞克隆中质粒的拷贝数分别为2.26±0.32、1.52±0.25、25.68±1.02、8.43±0.73和6.72±0.10。hiTAIL-PCR对整合位点的检测结果表明,质粒片段在插入到基因组的过程中进行了重组,其与基因组的结点处有2或4个共同的碱基序列。该研究探索MSTN干扰载体在牛胎儿成纤维细胞中的整合机制,以期获得遗传背景清楚的转基因细胞作为体细胞核移植的重要材料,为高产转基因肉牛新品种的培育提供重要的理论和实验基础。  相似文献   

12.
Non-viral transposons have been used successfully for genetic modification of clinically relevant cells including embryonic stem, induced pluripotent stem, hematopoietic stem and primary human T cell types. However, there has been limited evaluation of undesired genomic effects when using transposons for human genome modification. The prevalence of piggyBac(PB)-like terminal repeat (TR) elements in the human genome raises concerns. We evaluated if there were undesired genomic effects of the PB transposon system to modify human cells. Expression of the transposase alone revealed no mobilization of endogenous PB-like sequences in the human genome and no increase in DNA double-strand breaks. The use of PB in a plasmid containing both transposase and transposon greatly increased the probability of transposase integration; however, using transposon and transposase from separate vectors circumvented this. Placing a eGFP transgene within transposon vector backbone allowed isolation of cells free from vector backbone DNA. We confirmed observable directional promoter activity within the 5′TR element of PB but found no significant enhancer effects from the transposon DNA sequence. Long-term culture of primary human cells modified with eGFP-transposons revealed no selective growth advantage of transposon-harboring cells. PB represents a promising vector system for genetic modification of human cells with limited undesired genomic effects.  相似文献   

13.
胡广东  郝科兴  黄涛  曾维斌  谷新利  王静 《遗传》2018,40(8):647-656
piggyBac (PB)是一种能在多种动物细胞中进行转座的DNA转座子,作为一种转基因工具已被广泛应用于各种哺乳动物转基因研究中。针对不同物种对PB转座子进行改造,是提升其通用性的必要手段。为构建基于绵羊细胞进行转基因操作的通用型PB转座子载体,本研究对PB转座酶(PBase)基因进行绵羊密码子偏好性优化并将其克隆到pBNW-TP1载体中,成功构建了PB转座子载体pBNW-TP2。将pBNW-TP2转染到绵羊成纤维细胞和乳腺上皮细胞中,利用G418筛选获取稳定转染细胞株;利用Tail-PCR检测稳定转染细胞株的PB转座位点,对细胞阳性克隆进行亚甲蓝染色;利用非配对t检验确认其转座效率。结果表明,pBNW-TP2成功介导了绵羊成纤维细胞和乳腺上皮细胞转基因阳性细胞株的生产;PB转座位点检测表明pBNW-TP2能特异性整合到绵羊基因组TTAA位点,其整合位点倾向于功能基因间;亚甲蓝染色统计分析结果提示pBNW-TP2介导的转基因效率显著提升。本研究成功构建了绵羊通用型PB转座子载体pBNW-TP2,并在绵羊体细胞中对其特性进行验证和分析,为PB转座子在绵羊体细胞中开展转基因相关研究提供了科学依据。  相似文献   

14.
The insertion sites of elements Tn9 and Tn601 which determine chloramphenicol and kanamycin resistance have been detected restriction analysis. The functioning of transposons i.e. their stability or instability, has been found to influence the specificity of their insertions into the genome of lambda att80 bacteriophage. During transposition from stable integration sites both transposons are inserted into the regions of the lambda att80 bacteriophage genome, definite for each transposon. However, during transposition from the site of unstable integration both determinants of drug resistance are inserted into different regions of the phage genome.  相似文献   

15.
A recombinant plasmid with wide-host-range transfer functions, narrow-host-range replication functions, and carrying a kanamycin-resistant transposon transferred kanamycin resistance to a number of plant-associated pseudomonads. Southern hybridization studies suggest that only a small portion of the plasmid, coinciding with the location of the transposon, is present in the kanamycin-resistant Pseudomonas derivatives. The plasmid sequences appear to be inserted at a number of different sites in the recipient genome. This plasmid can thus be used as a vehicle for the introduction of transposons into some plant-associated pseudomonads and should be useful in both genetic and ecological studies of these bacteria.  相似文献   

16.
Transposons are widely used for genetic engineering in various model organisms. Recently, piggyBac (PB) has been developed as a transposable and efficient gene transfer tool in mammalian cells. In the present study, we developed three types of PB transposon systems containing a dual plasmid system (DPS), a single plasmid system (SPS), and a DNA-mRNA combined system (DRPS) and characterized their basic properties in HEK293 cells. The basic elements of the donor plasmid included a selectable-reporter gene expression cassette, two loxP sites in the same orientation, a multiple cloning site, and two chicken β-globin insulator core elements. We further identified the function of the selectable-reporter and examined PB integration sites in the human genome. Moreover, we compared the transposition efficacy and found that SPS transposed more efficiently, as compared to DPS; integration into the host genome was determined by measuring PBase activity. Results discovered the loss of PBase activity in the DRPS, indicating that this system is much more biologically safe, as compared to DPS and SPS. Finally, we employed the DRPS to successfully perform a gene delivery into bovine mammary epithelial cells (BMECs). Taken together, the information from this study will improve the flexibility of PB transposon systems and reduce the genotoxicity of PBase in genetic engineering.  相似文献   

17.
The nonagglutinating vibrions having Tn-elements inserted into the chromosome were obtained as a result of conjugal transfer of vector plasmids carrying the different transposons (Tn9, Tn10, Tn601, Tn5-Mob) and of the consequent isolation of plasmid-free clones of Vibrio cholerae non OI. Identification of auxotrophic mutations induced by the transposons inserted into the bacterial genome made possible the construction of the primary chromosomal map of Vibrio cholerae non OI. The efficient donor strains of Vibrio cholerae non OI were constructed by introducing the transposon Tn5-Mob and the helper plasmid RP-4. The donors are capable of oriented conjugal transfer of chromosome.  相似文献   

18.
The Sleeping Beauty (SB), piggyBac (PB) and Tol2 transposons are promising instruments for genome engineering. Integration site profiling of SB, PB and Tol2 in human cells showed that PB and Tol2 insertions were enriched in genes, whereas SB insertions were randomly distributed. We aimed to introduce a bias into the target site selection properties of the transposon systems by taking advantage of the locus-specific integration system of adeno-associated virus (AAV). The AAV Rep protein binds to Rep recognition sequences (RRSs) in the human genome, and mediates viral integration into nearby sites. A series of fusion constructs consisting of the N-terminal DNA-binding domain of Rep and the transposases or the N57 domain of SB were generated. A plasmid-based transposition assay showed that Rep/SB yielded a 15-fold enrichment of transposition at a particular site near a targeted RRS. Genome-wide insertion site analysis indicated that an approach based on interactions between the SB transposase and Rep/N57 enriched transgene insertions at RRSs. We also provide evidence of biased insertion of the PB and Tol2 transposons. This study provides a comparative insight into target site selection properties of transposons, as well as proof-of-principle for targeted chromosomal transposition by composite protein-protein and protein-DNA interactions.  相似文献   

19.
We have developed efficient methods for creating artificial transposons and inserting these transposons into plasmid targets in vitro, primarily for the purpose of DNA mapping and sequencing. A novel plasmid has been engineered to convert virtually any DNA sequence, or combination of sequences, into an artificial transposon; hence, custom transposons containing any desired feature can be easily designed and constructed. Such transposons are then efficiently inserted into plasmid targets, in vitro, using the integrase activity present in yeast Ty1 virus-like particles. A single in vitro integration reaction, which resembles a simple restriction digestion in the complexity of the reaction, gives rise to thousands of recoverable insertion events within DNA target molecules; this frequency approaches one insertion per phosphodiester bond in typical plasmids. Importantly, transposon insertions are recovered from all regions of DNA inserts carried on plasmid targets, indicating that integration is a random or nearly-random process. Because of its versatility, this technology offers a generalized method of generating recombinant DNA molecules of a desired structure. We have adapted this system for DNA sequencing by developing a customized artificial transposon to insert new primer binding sites into internal regions of DNA inserts carried on cloning vectors. Transposon insertions have been generated throughout several different yeast and human DNA inserts carried on plasmids, allowing the efficient recovery of sequence information from these inserts. Our results demonstrate the overall utility of this method for both small and large-scale DNA sequencing, as well as general DNA restructuring, and indicate that it could be adapted for use with a number of additional applications including functional genetic analysis.  相似文献   

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