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毕赤酵母表达系统是近年来发展起来的一种高效表达外源基因的表达系统。综述了毕赤酵母表达系统的起源、生物学特性、融合蛋白的表达以及影响蛋白表达量的因素。 相似文献
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毕赤酵母表达系统研究进展 总被引:8,自引:1,他引:8
毕赤酵母表达系统是目前最为成功的外源蛋白表达系统之一。该表达系统不存在原核表达系统的内毒素难以除去的问题 ,也不存在哺乳动物细胞表达系统的病毒和支原体污染等问题 ;并能够对目的蛋白进行类似高等真核生物的信号肽剪切、二硫键形成、糖基化等过程的翻译后蛋白加工。至今已有多种外源蛋白在该表达系统中成功表达。下面对毕赤酵母表达系统的特点及研究进展作一简要综述。 相似文献
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巴斯德毕赤酵母外源基因表达系统 总被引:5,自引:0,他引:5
巴斯德毕赤酵母是目前最为成功的外源基因表达系统之一。有关研究主要涉及以下几个方面。宿主菌株、表达载体、转化方法、外源基因的整合与影响外源蛋白表达的因素等。 相似文献
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巴斯德毕赤酵母是一种近年来广泛使用的基因表达系统,它具有表达率高、遗传稳定、产物可分泌、发酵工艺成熟等许多优点.综述了该系统在载体类型、载体元件(包括启动子、选择标记和信号肽序列)、受体类型、以及提高整合拷贝数等方面的进展. 相似文献
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启动子是基因表达调控的重要顺式元件,启动子功能的强弱对于目的基因的表达非常重要.为找到一个启动转录功能较好的启动子,以绿色荧光蛋白(GFP)为报告基因,在毕赤酵母中研究不同启动子对外源蛋白表达的影响.首先采用PCR扩增的方法克隆了酿酒酵母甘油合成关键酶3-磷酸甘油脱氢酶基因启动子pScgpd,借助于载体pPIC9K和p... 相似文献
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毕赤酵母高效表达策略概述 总被引:1,自引:0,他引:1
毕赤酵母表达系统是外源蛋白表达的较为理想的系统,但是并不是所有蛋白都能利用此系统获得高效表达,不同来源的蛋白,其表达水平、生物活性和稳定性均存有明显差别。概述了影响毕赤酵母高效表达的主要因素以及外源蛋白在毕赤酵母中的高效表达策略。 相似文献
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毕赤酵母表达外源基因研究进展 总被引:14,自引:0,他引:14
毕赤酵母表达系统作为一种新型酵母表达系统,它既有原核生物的特点,又有真核生物的特性,可以对目的蛋白质进行糖基化、二硫键形成等翻译后修饰。在过去的20年中已经有200多种不同蛋白在毕赤酵母中实现了成功表达,其中许多已被广泛应用于临床诊断治疗或科研工作中。随着一系列新型酵母表达载体及菌株的构建及发酵技术的不断提高,毕赤酵母越来越吸引着科学家的关注,毕赤酵母己被发展成为一种细胞生物学研究及基因工程生产的模式真核生物。本文总结了毕赤酵母的载体与菌株构建及发酵技术和糖基化等方面近年的主要研究进展。 相似文献
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Constitutive expression of human pancreatic lipase-related protein 1 in Pichia pastoris 总被引:2,自引:0,他引:2
Aloulou A Grandval P De Caro J De Caro A Carrière F 《Protein expression and purification》2006,47(2):415-421
High-level constitutive expression of the human pancreatic lipase-related protein 1 (HPLRP1) was achieved using the methylotrophic yeast Pichia pastoris. The HPLRP1 cDNA, including its original leader sequence, was subcloned into the pGAPZB vector and further integrated into the genome of P. pastoris X-33 under the control of the glyceraldehyde 3-phosphate dehydrogenase (GAP) constitutive promoter. A major protein with a molecular mass of 50 kDa was found to be secreted into the culture medium and was identified using anti-HPLRP1 polyclonal antibodies as HPLRP1 recombinant protein. The level of expression reached 100-120 mg of HPLRP1 per liter of culture medium after 40 h, as attested by specific and quantitative enzyme-linked immunosorbent assay. A single cation-exchange chromatography sufficed to obtain a highly purified recombinant HPLRP1 after direct batch adsorption onto S-Sepharose of the HPLRP1 present in the culture medium, at pH 5.5. N-terminal sequencing and mass spectrometry analysis were carried out to monitor the production of the mature protein and to confirm that its signal peptide was properly processed. 相似文献
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Multiple gene copy number enhances insulin precursor secretion in the yeast Pichia pastoris 总被引:2,自引:0,他引:2
Mansur M Cabello C Hernández L País J Varas L Valdés J Terrero Y Hidalgo A Plana L Besada V García L Lamazares E Castellanos L Martínez E 《Biotechnology letters》2005,27(5):339-345
We have found a direct relationship between protein production in Pichia pastoris and the number of introduced synthetic genes of miniproinsulin (MPI), fused to the Saccharomyces cerevisiae pre-pro alpha factor used as secretion signal, and inserted between the alcohol oxidase 1 (AOX1) promoter and terminator sequences. Two consecutive approaches were followed to increase the number of integrated cassettes: the head-to-tail expression cassette multimerization procedure and re-transformation with a dominant selection marker. This increased expression from 19 to 250 mg l–1 when about 11 copies have been integrated. Further, the correct position of one of the disulphide bridges of the purified molecule was verified by digestion with Glu-C endoprotease, followed by mass spectrometry of the isolated fragments. 相似文献
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For several years, interferon α-1, also known as interferon α-D, has been studied for treatment of various viral diseases, such as hepatic fibrosis caused by hepatitis B, herpes simplex virus keratitis, and bovine respiratory diseases in calves. Currently, recombinant human interferon α-D (rHuIFNαD) is expressed intracellularly in Escherichia coli or secreted by Bacillus subtilis and Saccharomyces cerevisiae. In this report, we describe the process of obtaining a relatively high-yield secretion of biologically active recombinant rHuIFNαD using the Pichia pastoris system. The process produced as high as 0.7 mg of purified protein per 20 ml of shake culture of rHuIFNαD with better bioactivity than the commercially available rHuIFNαD molecule produced in E. coli. 相似文献
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Cloning and expression of human lectin-like oxidized low density lipoprotein receptor-1 in<Emphasis Type="Italic"> Pichia pastoris</Emphasis> 总被引:2,自引:0,他引:2
Lectin-like oxidatively-modified LDL receptor-1 (LOX-1) is a major receptor for oxidized low-density lipoprotein (oxLDL) in aortic endothelial cells. Human LOX-1 (hLOX-1) gene (cDNA) was cloned from the monocytic leukemic cell line THP-1 and expressed in Pichia pastoris. The recombinant protein (rhLOX-1) was purified by his-tag affinity chromatography. Preliminary identification was performed by Western blot analysis and a ligand-receptor binding assay showed that the protein had specific oxLDL-binding activity.Revisions requested 21 September 2004; Revisions received 10 November 2004 相似文献
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The human tumour suppressor P53 is a key protein involved in tumour suppression. P53 acts as a "guardian of genome" by regulating many target genes involved in cell cycle regulation, DNA repair and apoptosis. We report the P53 expression by the methylotrophic yeast Pichia pastoris using the methanol inducible AOX1 promoter. We have produced the rP53 in intracellular form as well as secreted using the Saccharomyces cerevisiae alpha-mating factor prepro-leader sequence in two genetic contexts of Pichia, Mut(s) and Mut(+). The intracellular P53 was successfully produced by Mut(s) (KM71) as well as Mut(+) (X33) strains, however, the secreted form was mainly observed in the Mut(s) strain, despite a higher number of p53 copies integrated in the Mut(+) strain. Interestingly, in Mut(s) phenotype, the medium pH influences markedly the rP53 production since it was higher at pH 7 than 6. 相似文献
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The glycoprotein hormones, luteinizing hormone (LH), human chorionic gonadotropin (hCG), thyroid stimulating hormone (TSH), and follicle stimulating hormone (FSH), play important roles in overall physiology and reproduction. These hormones are heterodimeric molecules consisting of an identical alpha subunit non-covalently associated with the hormone-specific beta subunit. The inherent structural intricacies possessed by these hormones make them very interesting model systems for structure-function relationship studies of complex dimeric glycoproteins. The structural studies, as well as, the therapeutic applications require large quantities of biologically active hormones free of any contaminants. In this study, we report hyperexpression and purification of biologically active recombinant hLH and hCG expressed using Pichia pastoris expression system. A combination of hydrophobic interaction chromatography and ion exchange chromatography has been used to purify these recombinant hormones to homogeneity. Using a number of biochemical and immunological criteria, the recombinant hormones have been shown to be similar to the natural hormones and were equally biologically active. The preliminary data also suggested that P. pastoris cells express a low molecular weight isoform of hCG that appeared to be less glycosylated. This isoform exhibited lesser affinity for the receptor as compared to hCG, but was found to be fully biologically active. 相似文献
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Su M Zhou Y Wang D Xu T Chang W Wang M Yu X Feng D Han Z Yan W 《Protein expression and purification》2011,78(1):22-26
Apolipoprotein C-I (ApoC-I) is a small, basic apolipoprotein which is mainly secreted by the liver as a component of triglyceride-rich lipoproteins and high density lipoproteins whose importance in plasma lipoprotein metabolism is increasingly evident. At present, the only way to obtain native ApoC-I is separating it from human plasma. The methods have some restrictions on source, the complicated technology, the potential infections and a high cost which limits the research and application of native ApoC-I. Because of its small size, ApoC-I has previously been prepared by peptide synthesis which is also limited by a high cost. Therefore, in this study, a Pichia pastoris expression system was first used to obtain a high level expression of secreted, recombinant human ApoC-I (rhApoC-I). 相似文献
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Matthias Mack Marion Wannemacher Birgit Hobl Patricia Pietschmann Bjrn Hock 《Protein expression and purification》2009,66(2):165-171
The methylotrophic yeasts Pichia pastoris and Pichia angusta (Hansenula polymorpha) were used for the comparative heterologous production of two model mammalian proteins of pharmaceutical interest, the NK1-fragment (22 kDa) of human hepatocyte growth factor and the extracellular domain (28 kDa) of mouse tissue factor (MTF). Both recombinant proteins were engineered to contain an N-terminal Strep- (WSHPQFEK) and a C-terminal His6-tag. In addition, both proteins contained the pre-pro-sequence of Saccharomyces cerevisiae mating factor alpha to allow secretion. Following vector construction, transformation and zeocin amplification, the best Pichia producers were identified in a screening procedure using Western blot and a Luminex xMAP™ based high-throughput method. Recombinant NK1-fragment and MTF were purified from culture supernatants of the best producers by affinity chromatography (Ni–nitrilotriacetic acid columns). Using P. pastoris as a host for the synthesis of NK1-fragment a protein yield of 5.7 mg/l was achieved. In comparable expression experiments P. angusta yielded 1.6 mg/l of NK1-fragment. NK1-fragment apparently was not glycosylated in either system. For the production of MTF, P. pastoris was also the superior host yielding 1.2 mg/l glycosylated recombinant protein whereas P. angusta was clearly less efficient (<0.2 mg/l MTF). For both expression systems no correlation between the amount of recombinant protein and the copy number of the chromosomally integrated heterologous genes was found. In P. pastoris strains less degradation of the two model recombinant proteins was observed. Altogether, this paper provides a structured protocol for rapidly identifying productive Pichia strains for the synthesis of full-length recombinant proteins. 相似文献
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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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Manman Su Tianmin Xu Doudou Wang Yulai Zhou Chao Niu Weiqun Yan 《Protein expression and purification》2009,68(1):7-11
Apolipoprotein E3 (ApoE3) is an important apolipoprotein in plasma and plays a critical role in lipid transport and cholesterol homeostasis. As the only natural source of this protein, human blood cannot provide large-scale ApoE3 for research and applications. Therefore, in our study, a Pichia pastoris expression system was first used to obtain a high-level expression of secreted, recombinant human ApoE3 (rhApoE3).The full-length sequence encoding ApoE3, gained by RT-PCR, was inserted into the pPICZαC vector and transformed into P. pastoris strain X33, and then the high expression transformants with zeocin resistance were obtained. The growth conditions of the transformant strains were optimized in 50 ml conical tubes including pH and inducing time. After induction with methanol, the expression level of rhApoE3 was 120 mg/L in 80 L fermentor. RhApoE3 was purified more than 94% purity using SP Sepharose ion exchange chromatography and source™ 30RPC. A preliminary biochemical characterization of purified rhApoE3 was performed by analyzing the ability of inhibiting PDGF-induced proliferation of rat coronary artery smooth muscle cells (SMCs), and the results demonstrated that the function of purified rhApoE3 was similar to natural human ApoE3. 相似文献