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1.
Woo PC  Ma SS  Teng JL  Li MW  Lau SK  Yuen KY 《Biotechnology letters》2007,29(10):1575-1582
Among 21 human strains of Laribacter hongkongensis, small plasmids were observed in four strains, and large ones in six strains. The smallest, 3264-bp plasmid, pHLHK19, has only one ORF that encodes a putative replication initiator protein and a predicted origin of replication (ori) with a DnaA box, three 18-bp direct repeats and five pairs of inverted repeats. An Escherichia coli-L. hongkongensis shuttle vector was constructed by ligating the HindIII-digested pHLHK19, containing the replication initiator protein and ori of pHLHK19, to HindIII-digested pBK-CMV. This shuttle vector can propagate in E. coli and L. hongkongensis with good transformation efficiencies.  相似文献   

2.
A new E. coli-S. cerevisiae shuttle plasmid cloning vector (pPW263) with a positive type of selection, was constructed. The selection system, based on the regulatory region of lambda phage controlling the expression of tetracycline resistance, was derived from the cloning vector pUN121 (Nilsson et al. 1983). There are three cloning sites in the cI gene, EcoRI, HindIII and BglII, and, in addition, two unique sites in the neighborhood, BamHI and SalI. The size of the vector is 7.8 kb. The maintenance of the vector and the selection in yeast was ensured by the replication region of the 2 mu plasmid and by the URA3 marker gene, respectively.  相似文献   

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4.
目的构建由质子移位膜ATP酶(membrane-bound proton-translocating ATPase,F-ATPase)启动子启动的绿色荧光蛋白报告基因穿梭表达载体,观察其在大肠埃希菌中的表达同时鉴定表达产物。方法以变形链球菌(UA159)基因组为模板,扩增F-ATPase启动子片段,构建由F-ATPase启动子启动的绿色荧光表达载体pFgfp,酶切F-ATPase启动子及绿色荧光蛋白编码基因,连接到穿梭质粒pDL276,构建重组载体pLFgfp。结果重组质粒pLFgfp酶切及基因序列分析证实目的片段成功插入,重组载体转化后的大肠埃希菌有绿色荧光蛋白的表达,并能随着细菌传代继续表达。结论 F-ATPase启动子启动的绿色荧光蛋白穿梭表达载体pLFgfp构建成功,为研究生物膜环境中耐酸菌F-ATPase毒力因子的表达奠定基础。  相似文献   

5.
目的 研究异源(猪)基因α1,3半乳糖转移酶(3GT)与增强型绿色荧光蛋白(EGFP)基因形成的融合蛋白对其荧光表达量的影响.方法 BamHI,EcoRI酶切pcDNA3.1-α1,3GT重组载体后,回收含α1,3GT的片段,与BamHI、EcoRI酶切回收的pEGFP-N1载体连接,并酶切、测序鉴定重组真核表达载体p...  相似文献   

6.
目的:利用分子生物学技术和方法将pRSET-B质粒改建为带有绿色荧光蛋白(GFP)突变体基因(GFP-S65T)的新型瞬时表达载体pRSET-EGFP,并在E.coli.BL21中得到GFP基因的高效表达。方法:PCR法从pEGFP质粒克隆GFP-S65T cDNA并在5’末端引入KpnⅠ的位点。将扩增出来的GFP-S65T基因和pRSEY-B质粒用HindⅢ和KpnⅠ双酶切后连接构成重组质粒。用化学法把重组质粒转化到E.coli.BL21中,培养发酵液。OD540=0.4时加入IPTG诱导GFP-S65T基因转录和表达,合成绿色荧光蛋白。还对诱导条件进行了优化,发酵液OD540=0.4加入IPTG可以得到最优表达。结果:通过Ni^2 柱亲和层析,纯化得到绿色荧光蛋白,SDS-PAGE电泳检测,分子量为27kDa,与文献报道值一致。这说明Ni^2 柱能够有效的纯化表达产物。结论:成功构建了新型瞬时表达载体pRSET-EGFP,并且在E.coli.BL21中得到高效表达。  相似文献   

7.
A shuttle vector, p5aGFP2201a, for lactic acid bacteria and E. coli was constructed by using the gene of a jellyfish green fluorescent protein ( gfp) as a selection marker. The plasmid was shown to function as a shuttle vector by its ability to carry and express a staphylococcal chloramphenicol acetyltransferase ( cat) gene into targeted hosts.  相似文献   

8.
目的构建含有人核糖核酸酶抑制因子(hRI)基因的重组腺病毒载体。方法以含有全长cDNA的pT7-RI为模板,PCR扩增hRI,经T载体克隆后,酶切亚克隆到穿梭质粒pAdTrack—CMV上,在BJ5183细菌内和pAdEasy-1同源重组。筛选阳性克隆,酶切、PCR及测序鉴定,线性化后脂质体法转染293细胞进行包装、扩增。通过观察绿色荧光蛋白(GFP)的表达及PCR扩增目的基因等方法鉴定重组的腺病毒。结果酶切鉴定及PCR结果证明hRI基因重组腺病毒载体构建成功,病毒滴度为1.5×10^10 pfu/ml。结论应用细菌内同源重组法成功构建了含hRI基因的重组腺病毒载体。  相似文献   

9.
目的:构建同时携带低氧诱导因子-1α(HIF-1α)和角质细胞生长因子(KGF)N腺病毒载体(pAdxsi-GFP-HIF-KGF),观察其在防治肺损伤潜在的应用前景。方法:低氧处理A549细胞后提取总RNA并逆转录为eDNA作为模板,依据GeneBank公布的HIF-1α cDNA设计引物,并分别引入KpnI和BamHI酶切位点,PCR扩增后将目的基因HIF-1α连接到载体pShuttle-CMV-EGFP上,构建重组质粒pShuttle-GFP—HIF。然后以质粒plRES2-EGFP-KGF为模板,用引入NheI和PmeI酶切位点的引物PCR扩增KGF基因并克隆到重组质粒pShuttle-GFP-HIF上,获得穿梭质粒重组质粒pShuttle—GFP-HIF—KGF。采用细菌内重组方法将目的序列重组到pAdxsi病毒骨架栽体上构建携带HIF.10t和KGF双基因的重组腺病毒载体pAdxsi-GFP-HIF-KGF。检测重组腺病毒滴度后,转染人肺泡上皮细胞A549,检测目的基因的转染表达。结果:通过对构建质粒克隆进行测序及酶切,证实携带HIF—lot和KGF双基因的重组腺病毒载体pAdxsi-GFP-HIF-KGF构建成功,且构建的重组腺病毒纯度好、滴度高。用pAdxsi-GFP-HIF-KGF以100MOI转染A549细胞后24h后在荧光显微镜下可观察到细胞有较强的绿色荧光表达,48h时荧光更强;转染48hELISA法检测培养上清中HIF-1蛋白表达水平为(56.36±4.53)ng/mL,KGF蛋白表达水平为(60.20±2.92)ng/mL。结论:成功构建了腺病毒栽体pAdxsi-GFP-HIF-KGF,其转染效率及目的基因的蛋白表达水平较高,具有潜在的进一步在肺损伤局部应用的前景,为后期制备可以同时发挥KGF、HIF-1作用的基因治疗药物打下基础,同时为高海拔地区应激性急性肺损伤的有效防治提供实验基础。  相似文献   

10.
利用乳酸乳球菌AcmA表面展示β-1,3-1,4-葡聚糖酶   总被引:2,自引:0,他引:2  
采用PCR扩增乳酸乳球(Lactococcus lactis)MBl91菌株的全长肽聚糖水解酶基因acmA,通过C-末端融合构建了与绿色荧光基因gfp的融合基因acmA-gfp,再连接于表达载体pMG36k上后得到可组成型表达AcmA-GFP融合蛋白的重组质粒pMB137,然后将该质粒电转化导入到乳酸乳球菌AS1.2829中获得重组菌MB137.经SDS-PAGE检测.重组菌MB137可表达预期的分子量约74 kD的蛋白质.Western blotting、细胞分级分离组分的荧光活性测定和特异GFP 二抗标记的流式细胞仪检测证实GFP被成功锚定在重组茵细胞表面,被锚定蛋白约占总表达融合蛋白的35%.进一步通过从枯草芽胞杆菌BF7658基因组中扩增去信号肽序列的β-1,3-1,4葡聚糖酶基因gls,来取代pMB137中的gfp,得到携带融合基因acmA-gls的重组质粒pMB138,经导入到乳酸乳球茵AS1.2829后得到重组菌MB138,其全细胞β-1,3-1,4-葡聚糖水解酶的活性约为12 U/mL茵液,明显高于对照茵株.  相似文献   

11.
实验拟构建钝顶螺旋藻luxAB载体,为螺旋藻遗传转化操作系统的建立提供技术参考和支持。使用EcoRI和SmaI双酶切质粒pUCΩGUS,胶回收获得含有Ubil启动子基因及amp基因的载体大片段;根据质粒pRL1063a中luxAB基因的序列设计引物,以质粒pRL1063a为模板(SalI酶切),PCR扩增luxAB基因片段;在T4 DNA连接酶的作用下将载体大片段和luxAB基因片段进行体外连接重组并转化感受态细胞,构建成新型质粒载体pUCΩluxAB。  相似文献   

12.
目的:构建含有小鼠Lrrc10(Leucine-rich Repeat Containing protein 10)基因的重组腺病毒表达载体。方法:设计小鼠Lrrc10特异性引物,以小鼠cDNA为模板,通过PCR扩增出mLrrc10的编码区,并引入HA标签蛋白和Sal Ι酶切位点。该片段经凝胶电泳纯化后插入pMD-18 T载体。测序后,用Sal Ι和Hind III酶切,将目的片段亚克隆至pAd-track-cmv穿梭载体中。用PmeΙ线性化后,用100 ng转化细菌BJ5183,在细菌内同源重组后得到 pAd-Lrrc10质粒。pAd-Lrrc10经PacⅠ线性化后用LipofectamineTM2000转染293A细胞,包装得到含Lrrc10基因的病毒重组子。将病毒重组子在293A细胞中扩增后,反复冻融得到滴度较高的含Lrrc10的病毒液。将收集的病毒液感染心肌细胞,绿色荧光观察 GFP、免疫印迹检测Lrrc10-HA蛋白的表达。结果:用病毒液感染原代心肌细胞,24小时后在荧光显微镜下可观察被感染的细胞发出绿色荧光,提取心肌细胞总蛋白,Western可检测到Lrrc10-HA融合蛋白的表达。结论:小鼠Lrrc10腺病毒载体构建成功,并可将编码Lrrc10-HA的目的片段导入心肌细胞中表达。  相似文献   

13.
王丽梅  师长宏  柏银兰  张海  康健  张薇  徐志凯 《生物磁学》2011,(18):3405-3407,3430
目的:构建能够分泌表达结核分枝杆菌热休克蛋白65(Hsp65)与人IL-2融合蛋白的重组耻垢分枝杆菌(recombinant Mycobacterium Smegmatis,rMs)。方法:用EcoRV和HindIII双酶切含Hsp65.IL-2融合基因的pPRO-hsp65-IL-2载体,回收目的基因片断Hsp65-IL-2,并将其亚克隆入同样双酶切的大肠埃希菌-分枝杆菌穿梭分泌表达载体pDE22中。重组质粒pDE22-hsp65-IL-2酶切鉴定正确后,电穿孔转化MS感受态,潮霉素抗性压力筛选阳性rMs。Westem—blot鉴定rMs培养上清蛋白中目的蛋白的表达。结果:重组pDE22-hsp65-IL-2质粒酶切后可获得约2000bp片段,与预期大小一致。Western-blot结果表明,rMs培养上清蛋白中有特异性反应条带,大小为78kD,与Hsp65-IL-2融合蛋白大小相一致。结论:成功构建了大肠埃希菌.分枝杆菌穿梭分泌表达载体pDE22-hsp65-IL-2,为该rMs的免疫学特性及抗结核分枝杆菌感染的保护效果研究奠定了基础。  相似文献   

14.
为了将绿色荧光蛋白(green fluorescent protein,GFP)引入细胞核内,采用两轮PCR方法从原先克隆在pcD-NA3.1(-)+GFP载体中将GFP编码序列扩增出来并引入Kozak序列和核定位信号,使用常规酶切和连接方法将其重组至pUCm-T克隆载体中,再将目的片段重组至pcDNA3.1(-)中,对阳性克隆进行酶切、PCR和测序鉴定后,构建了带有Kozak序列和核定位信号的绿色荧光蛋白(GFP)真核表达载体pcDNA3.1(-)+KG。真核表达载体pcDNA3.1(-)+KG被转染试剂Su-perfect转染至HeLa细胞中,绿色荧光蛋白基因在HeLa细胞中得到表达而且在细胞核中观察到绿色荧光。该研究以绿色荧光蛋白为标记初步建立了活体观察真核细胞核动态变化的研究体系。  相似文献   

15.
The chromosomal gene(s) for cephalosporinase production of Citrobacter freundii GN346 has been cloned into vector plasmid pMK1, initially as a 7.3 kb EcoRI fragment. From the substrate profile and the response to anti-GN346 CSase serum of the enzyme produced, it was confirmed that the hybrid plasmid (pTY71) carries the relevant chromosomal cephalosporinase gene from C. freundii GN346. A restriction endonuclease cleavage map of cloned EcoRI fragments was constructed, and the structural gene of the cephalosporinase could be limited in the 1.5 kb BamHI fragment. The cloned gene(s) was expressed at an extremely low level in Escherichia coli. Furthermore, its expression was constitutive in E. coli, although inducible in its own cytoplasm.  相似文献   

16.
用BamHI和PstI双酶切质粒pMTIIa-91s,获得光滑球拟酵母金属硫蛋白基因(MTIIa)片段,将其亚克隆到M13载体,扩增并回收MTIIa基因片段,经Southern杂交验证插入片段正确后,分别将MTIIa基因片段插入到大肠杆菌表达载体pBV220和大肠杆菌一酵母菌穿梭载体YIp352中,转化大肠杆菌DH5a,使其对CUSO4的抗性提高0.7mol/L左右;转化酿酒酵母受体菌YS59,使YS59对CUSO4的抗性提高1.5mol/L左右。结果证明光滑球拟酵母MTIIa基因在  相似文献   

17.
A 138-bp EcoO109/HinfI fragment of Streptococcus thermophilus plasmid pER341 (2798 bp) including the promoter sequence of the heat stress protein gene hsp16.4 was tested in vector constructs for ability to activate the promoterless green fluorescent protein gene (gfp) from a jelly fish in Escherichia coli, S. thermophilus, and lactococci. ST(Phsp) promoted gfp expression in transformed hosts as evidenced by the presence of green fluorescent (GFP(+)) colonies under UV illumination. The results confirmed the potential of ST(Phsp) as a functional promoter in heterologous gene expression in dairy fermentation bacteria.  相似文献   

18.
Construction of adenoviral vectors   总被引:12,自引:0,他引:12  
Recombinant adenovirus vectors have proven to be useful tools in facilitating gene transfer. Construction of such vectors requires a knowledge of the adenovirus genome structure and its life cycle. A commonly used recombinant adenovirus involves deletion of the E1 region; such a recombinant is traditionally produced by overlap recombination after contransfection of 293 cells with a plasmid shuttle vector and a large right-end restriction fragment of viral DNA. The shuttle vector contains a cassette for a transgene placed in region E1 and flanking sequences from adenovirus for recombination. Normally, a high background of parental virus results because of the difficulty in separating right-end restriction fragment length DNA from uncut DNA. This paper describes a negative selection based on the traditional cotransfection method using viral DNA from an E1-deleted adenoviral recombinant that expresses green fluorescent protein (GFP). In situ fluorescent microscopy is used to distinguish the recombinant plaques (white or nonfluorescent) from the parental virus plaques (green or fluorescent). In addition, this system allows for the detection of contaminating parental virus at later stages when production lots of the recombinant vector are being made.  相似文献   

19.
Molecular cloning and expression of Corynebacterium glutamicum genes complementing Escherichia coli mutations thrA2 and ilvA was performed. It was demonstrated that the thrA2 gene of C. glutamicum is located close to thrB on EcoRI DNA fragment 4.1 kb long. The fragment was cloned in pUC18 vector. The thrA2 gene is expressed in the recombinant plasmid pOBT3 under control of the vector pUC18 Plac promoter. In E. coli minicells, the genes thrA2 and thrB determined synthesis of proteins of Mr 43kD and 25 kD, respectively. A gene complementing ilvA mutation of E. coli was identified in a library of EcoRI C. glutamicum DNA fragments. This library was constructed using plasmid vector. It was shown that the ilvA gene of C. glutamicum is located inside the 3.6 kb EcoRI fragment and is expressed using its own promoter.  相似文献   

20.
目的克隆表达冠状病毒HcoV-229E S1基因片段,表达S1蛋白。方法合成冠状病毒HcoV-229ES1蛋白特异性基因片段并克隆入pET21a原核表达载体,转化BL21(DE3)菌,经IPTG高效诱导表达得到重组蛋白,用金属螯合亲和层析纯化,并通过Western blot对表达的重组蛋白进行鉴定。结果获得了主要以包涵体形式存在的目的蛋白,Western blot鉴定其为S1基因片段蛋白。结论成功构建了HcoV-229E S1蛋白的表达载体,并在BL21(DE3)中得到了高效表达,为下一步表达蛋白免疫原性及疫苗抗病毒保护性测定打下了基础。  相似文献   

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