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1.
从包含牛流行热病毒G蛋白基因的质粒pMD-G中克隆G1抗原表位区基因,亚克隆进表达载体pPIC9K,构建重组载体pPIC9K-G1,线性化后电转化毕赤酵母GS115,通过G418压力和PCR法筛选阳性重组酵母进行诱导表达。经SDS-PAGE、脱糖基化分析、Western blot、ELISA、兔体免疫实验和特异性分析,表明该基因在GS115中表达并进行了适度的糖基化,表达蛋白有良好的生物学活性和特异性,可作为包被抗原,开发ELISA诊断试剂盒。  相似文献   

2.
从包含牛流行热病毒G蛋白基因的质粒pMD-G中克隆G1抗原表位区基因,亚克隆进表达载体pPIC9K,构建重组载体pPIC9K-G1,线性化后电转化毕赤酵母GS115,通过G418压力和PCR法筛选阳性重组酵母进行诱导表达。经SDS-PAGE、脱糖基化分析、Western blot、ELISA、兔体免疫实验和特异性分析,表明该基因在GS115中表达并进行了适度的糖基化,表达蛋白有良好的生物学活性和特异性,可作为包被抗原,开发ELISA诊断试剂盒。  相似文献   

3.
猪囊尾蚴疫苗候选基因TSO18在酵母中的高效表达   总被引:4,自引:0,他引:4  
将猪带绦虫六钩蚴TSO18基因亚克隆至毕赤酵母分泌性表达载体pPIC9K,构建重组表达载体pPIC9K_TSO18,电转化毕赤酵母菌GS115,使重组表达载体与酵母染色体发生同源整合。采用G418抗性梯度法筛选得到多拷贝重组菌株,用甲醇进行诱导表达,并对表达产物进行SDS_PAGE和Western blot分析、脱糖基化分析、分子筛纯化和小鼠免疫接种等表明,目的蛋白得到了高效表达并进行了适度的糖基化,易于纯化且具有免疫活性。在5L发酵罐中目的蛋白表达量达到2.54mg/mL,为制备基因工程疫苗打下了坚实的基础。  相似文献   

4.
应用RT-PCR方法,扩增人VEGF121 cDNA基因片段,与酵母表达载体pPIC9K重组,获得表达质粒p9KVEGF121.该质粒转化毕赤酵母菌GS115,用G418-YPD平板筛选高拷贝转化子,PCR鉴定VEGF121 cDNA与酵母染色体整合状态,高拷贝转化子用甲醇诱导表达.工程菌用5 L发酵罐发酵,表达产物r-hVEGF121占培养液中总蛋白量70%以上.纯化产物促进牛毛细血管内皮(BCE)细胞增殖,并强烈促进血管通透.  相似文献   

5.
目的:用毕赤酵母表达L-阿拉伯糖异构酶。方法:用PCR法扩增大肠杆菌的L-阿拉伯糖异构酶基因,构建含L-阿拉伯糖异构酶基因的毕赤酵母分泌型表达载体pPIC9K-ai。通过电转法将pPIC9K-ai转化毕赤酵母GS115基因组。先筛选出高G418抗性的克隆,然后再从高拷贝的克隆中筛选出高表达重组L-阿拉伯糖异构酶的重组子作为工程菌GS115(pPIC9K-ai)。结果:在甲醇诱导下,摇瓶发酵GS115(pPIC9K-ai)3d,分泌表达L-阿拉伯糖异构酶32 mg/L。结论:毕赤酵母表达的L-阿拉伯糖异构酶具有转化D-半乳糖为D-塔格糖的生物活性。每升GS115(pPIC9K-ai)发酵液能转化D-半乳糖生成30 mgD-塔格糖。  相似文献   

6.
目的通过构建毕赤酵母表达载体将香菇菌C91-3凋亡相关蛋白24414在毕赤酵母GS115中进行表达,同时对表达产物进行鉴定。方法从香菇菌C91-3菌丝体中提取总RNA,根据转录组测序结果,用3'-Full RACE、5'-Full RACE方法获得24414基因,并将其克隆到毕赤酵母的表达载体pPIC9K中,构建真核重组表达质粒pPIC9K-24414。用电转化的方法将此质粒转化到毕赤酵母GS115中并进行诱导表达,对表达产物用Westen-blot方法进行鉴定。结果通过菌落PCR和基因序列分析确定插入pPIC9K中的片段为24414基因片段,通过Westen-blot方法确定所表达蛋白为目的蛋白。结论重组质粒pPIC9K-24414成功构建,目的凋亡相关蛋白24414在毕赤酵母GS115中成功表达,为进一步研究香菇菌C91-3凋亡相关蛋白24414的生物学功能奠定了基础。  相似文献   

7.
通过反转录PCR从里氏木霉RutC-30 基因中克隆到α-半乳糖苷酶基因agl2,将其构建到具有AOX1强启动子的表达载体pPIC9K中,线性化后转化到毕氏酵母GS115中进行表达。结果表明agl2基因在毕氏酵母GS115中得到了高效表达,在50 L发酵罐中高密度发酵168 h,酶活达最高值1 106 U/mL。经PCR产物鉴定,结果表明agl2基因已整合到毕氏酵母GS115基因组中。  相似文献   

8.
为了实现激发子PebC1编码基因在毕赤酵母中的分泌表达,采用PCR方法从灰葡萄孢菌BC-4-2-2-1菌株中扩增获得激发子PebC1的编码序列,将其亚克隆至酵母分泌型表达载体pPIC9K中,以此片段构建了pPIC9K-pebC1重组表达质粒。重组表达质粒经Bgl Ⅱ线性化处理,电击转化至毕赤酵母宿主菌GS115,经MD、G418-YPD平板和PCR法筛选,获得了重组毕赤酵母菌GS115/pPIC9K-pebC1。用甲醇诱导重组酵母菌表达目标蛋白,发酵液经SDS-PAGE电泳分析,在约39 kDa处出现特异目标条带。Western blotting检测结果说明,重组表达产物具有良好的抗原性。生物活性检测表明,酵母重组表达蛋白PebC1能够诱导拟南芥和黄瓜幼苗对灰霉病的抗性。  相似文献   

9.
目的构建真核酵母表达载体pPIC9K与小鼠IL-35基因的重组质粒pPIC9K-mIL-35-His,在毕赤酵母GS115菌株中诱导表达,并对其进行鉴定。方法以pET-30a-mIL-35为模板,用PCR扩增出IL-35去信号肽基因全序列,并在3'端引入His标签,构建重组质粒pPIC9K-mIL-35-His,经SalⅠ线性化重组质粒后,用电穿孔方法将该基因转染毕赤酵母细胞内。经G418梯度筛选高拷贝转化子,筛选Mut+表型后经PCR进一步鉴定IL-35基因与酵母染色体是否整合。小量诱导表达筛选出高表达菌株,大量甲醇诱导表达,以SDS-PAGE及免疫印迹(Western blot)鉴定蛋白表达。结果小鼠IL-35基因真核酵母表达载体pPIC9K-mIL-35-His构建成功,并且在GS115中通过甲醇诱导表达,经SDS-PAGE及Western blot分析,可见相对分子质量约为65 000的目的蛋白。结论实验所构建的重组质粒pPIC9K-mIL-35-His可在毕赤酵母GS115中正确的表达小鼠IL-35基因。  相似文献   

10.
利用毕赤酵母表达系统进行了禽流感病毒H5HA、H7HA及H9HA亚型血凝素基因的真核表达研究。首先将H5HA、H7HA及H9HA基因片段分别插入酵母分泌型表达载体pPIC9K中,获得重组质粒pPIC9K-H5HA、pPIC9K-H7HA和pPIC9K-H9HA;再将所获重组质粒分别经SacⅠ、BglⅡ及SalⅠ线性化后,电转化GS115感受态细胞,以插入/替换的方式进行重组,并经MD平板与MM平板筛选,及PCR鉴定,得到重组酵母工程菌GS115/pPIC9K-H5HA、GS115/pPIC9K-H7HA及GS115/pPIC9K-H9HA;用甲醇诱导分泌表达目标蛋白。经SDS-PAGE和Western-blotting检测,结果表明,H5HA、H7HA及H9HA蛋白在毕赤酵母中均获得表达。酵母表达了上述目的蛋白,可直接进行抗原检测,并可用于抗体检测试剂盒及亚单位疫苗制备的辅助研究。  相似文献   

11.
The epitope-G1 gene of Bovine ephemeral fever virus (BEFV) glycoprotein was synthesised by PCR and cloned into expression vector pPIC9K to construct recombinant plasmid pPIC9K-G1. Then the pPIC9K-G1 was linearized and transformed into Pichia pastoris GS115. The recombinant P. pastoris strains were selected by a G418 transformation screen and confirmed by PCR. After being induced with methanol, an expressed protein with 26 kDa molecular weight was obtained, which was much bigger than the predicted size (15.54 kDa). Deglycosylation analysis indicated the recombinant G1 was glycosylated. Western blot and ELISA tests, as well as rabbit immunization and specificity experiments indicated that the target protein had both higher reaction activity and higher immunocompetence and specificity. The recombinant G1 protein could be used as a coating antigen to develop an ELISA kit for bovine ephemeral fever diagnosis. Foundation item: National Dairy Foundation of China (2002BA518A04)  相似文献   

12.
The epitope-G1 gene of Bovine ephemeral fever virus(BEFV) glycoprotein was synthesised by PCR and cloned into expression vector pPIC9K to construct recombinant plasmid pPIC9K-G1.Then the pPIC9K-G1 was linearized and transformed into Pichia pastoris GS115.The recombinant P.pastoris strains were selected by a G418 transformation screen and confirmed by PCR.After being induced with methanol,an expressed protein with 26 kDa molecular weight was obtained,which was much bigger than the predicted size(15.54 kDa).Deglycosylation analysis indicated the recombinant G1 was glycosylated.Western blot and ELISA tests,as well as rabbit immunization and specificity experiments indicated that the target protein had both higher reaction activity and higher immunocompetence and specificity.The recombinant G1 protein could be used as a coating antigen to develop an ELISA kit for bovine ephemeral fever diagnosis.  相似文献   

13.
To obtain human tissue inhibitor of metalloproteinase-2 (TIMP-2) cDNA and the secretory expression of TIMP-2 gene in Pichia pastoris, we designed and synthesized a 618 base pairs artificial gene coding for the TIMP-2 with a computer-aided design method using a standard chemical synthesis technique, which was composed of frequently used codons in the highly expressed Pichia pastoris genes. Then the synthetic gene encoding TIMP-2 was checked by means of dideoxynucleotide sequencing. The verified gene of TIMP-2 was cloned to the Escherichia coli-yeast shuttle vector of pPIC9 to construct a recombinant plasmid pPIC9-T2. The plasmid was transformed into GS115 cells of the methylotrophic yeast, Pichia pastoris by electroporation, and we got the expression cell through phenotype selection and induction with methanol. Separation, purification, and bioactivity analysis of the expressed products were performed. __________ Translated from Microbiology, 2006, 33(1): 1–6 [译自: 微生物学通报]  相似文献   

14.
To explore a new approach of high expression of -amino acid oxidase (DAAO) in Pichia pastoris, a gene encoding DAAO from Trigonopsis variabilis (TvDAAO gene) deleted intron was prepared by PCR amplification and cloned into the intracellular expression vector pPIC3.5K. The expression plasmid pPIC3.5K-DAAO linearized by SalI was transformed into Pichia pastoris strain GS115 (hismut+). By means of MM and MD plates and PCR, the recombinant P. pastoris strains (his+mut+) were obtained. Activity assay and SDS-PAGE demonstrated that DAAO was intracellularly expressed in P. pastoris with the induction of methanol. The recombinant strain PD27 with the highest expression of DAAO was screened through activity assay and its high-density fermentation was carried out in a 1-l fermentor. Activity assay and SDS-PAGE demonstrated that DAAO was intracellularly expressed in P. pastoris with the induction of methanol. The recombinant cells with high expression of DAAO were screened and the high-density fermentation was carried out in a 1-l fermentor. Interestingly, the DAAO expression level reached up to 473 U/g dry cell weight in fermentation yield. Finally, 1-hexanol was used to break recombinant cells and the specific activity of DAAO was 1.46 U/mg protein in crude extraction.  相似文献   

15.
To improve the expression level of recombinant Drosophila melanogaster AChE (R-DmAChE) in Pichia pastoris, the cDNA of DmAChE was first optimized and synthesized based on the preferred codon usage of P. pastoris. The synthesized AChE cDNA without glycosylphosphatidylinositol (GPI) signal peptide sequence was then ligated to the P. pastoris expression vector, generating the plasmid pPIC9K/DmAChE. The linearized plasmid was homologously integrated into the genome of P. pastoris GS115 via electrotransformation. Finally seven transformants with high expression level of R-DmAChE activity were obtained. The highest production of R-DmAChE in shake-flask culture after 5-day induction by methanol was 718.50 units/mL, which was about three times higher than our previous expression level of native DmAChE gene in P. pastoris. Thus, these new strains with the ability to secret R-DmAChE in the medium could be used for production of R-DmAChE to decrease the cost of the enzyme expense for rapid detection of organophosphate and carbamate insecticide residues.  相似文献   

16.
【背景】植酸是一种能螯合金属离子和蛋白质的有机磷类化合物,广泛存在于植物组织中,影响动物对营养元素的吸收。在饲料中加入植酸酶可有效降解植酸。【目的】构建毕赤酵母异源表达卡氏德巴利酵母(Debaryomyces castellii,D. castellii)植酸酶的菌株,促进卡氏德巴利酵母植酸酶的研究及工业应用。【方法】将卡氏德巴利酵母植酸酶基因进行密码子优化后转入毕赤酵母GS115中,通过筛选多拷贝、敲除蛋白酶、过表达分子伴侣及转运蛋白的方法获取优势菌株。【结果】所得重组菌株GS115/DCphy(ΔPep4)(BFR2)的产酶酶活是低拷贝菌株的7倍。【结论】研究结果为卡氏德巴利酵母植酸酶的异源表达及潜在工业应用提供了一定的指导。  相似文献   

17.
从细极链格孢菌表达文库获得阳性克隆子,序列分析表明,克隆的DNA片段中含有完整的开放阅读框架,将该基因命名为peaT2(GenBank登录号为EF212880)。用PCR法扩增peaT2基因的编码序列并亚克隆到毕赤酵母表达系统的表达载体pPIC9K上,得到重组质粒pPIC9K/peaT2。重组质粒经SacⅠ线性化后用电穿孔法导入到毕赤酵母(Pichia pastoris)GS115中,采用MD、G418-YPD平板和PCR法筛选Mut+表型,获得了分泌表达的重组毕赤酵母。随机挑取一菌株作为表达菌,用甲醇诱导PeaT2蛋白表达。SDS-PAGE及Western blot检测结果均表明PeaT2在毕赤酵母中成功地分泌表达。用peaT2基因的表达蛋白处理小麦种子,生物测定表明,表达蛋白能明显促进小麦的生长,具有蛋白激发子作用。  相似文献   

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