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1.
【目的】实现鼠灰链霉菌来源经密码子优化后的腺苷酸脱氨酶基因在乳酸克鲁维酵母(Kluyveromyces lactis GG799)中组成型表达。【方法】以鼠灰链霉菌(Streptomyces murinus)来源的腺苷酸脱氨酶(AMP)基因经密码子优化后作为模板,设计特异性引物,PCR扩增AMP脱氨酶基因opt-AMPD,以p KLAC1为载体构建重组表达质粒p KLAC1-opt-AMPD,经Sac II线性化后电转化法转入K.lactis GG799,筛选得到重组菌株,测定酶活,经His TrapTM HP纯化后得到AMP脱氨酶,并优化重组菌的发酵培养基。【结果】对AMP脱氨酶基因进行了密码子优化后,构建了重组K.lactis GG799/p KLAC1-opt-AMPD,实现组成型表达,密码子优化后AMP脱氨酶酶活提高到586±50 U/m L。SDS-PAGE结果显示,纯化后的AMP脱氨酶为单一条带,蛋白大小约为60 k D。优化的发酵培养基为(g/L):葡萄糖40、蛋白胨20、酵母粉15、Na Cl 8、KCl 10、Mg SO4 2,30°C、200 r/min发酵120 h,酶活达到2 100±60 U/m L。【结论】实现了密码子优化后的腺苷酸脱氨酶基因在乳酸克鲁维酵母GG799内的组成型表达,为实现腺苷酸脱氨酶的重组高效表达和发酵生产进行了有益探索。  相似文献   

2.
利用重叠PCR技术拼接PTH和HSA基因,并将构建好的融合基因插入到载体pUC19测序后插入表达载体pPIC9K中,在启动子AOXⅠ和α交配因子信号肽的作用下,分泌表达融合蛋白PTH-HSA。重组质粒pPIC9K/PTH-HSA经SalⅠ线性化后,电击转化毕赤酵母KM71,经G418筛选得到的转化子。PCR鉴定后,用甲醇诱导表达,蛋白电泳分析表明融合基因得到表达; Western blot分析表明发酵液上清中表达的融合蛋白PTH-HSA具有HSA的抗原性:用酶标法测定发酵上清中融合蛋白的甲状旁腺激素活性为318IU/ml  相似文献   

3.
目的:将植物乳杆菌ZS2058(Lactobacillus plantarum ZS2058)的亚油酸异构酶基因在乳酸克鲁维酵母(Kluyveromyces lactis)中进行克隆表达。方法:根据NCBI中已报道亚油酸异构酶(linoleate isomerase,LAI)基因的序列特征,设计引物对筛得的植物乳杆菌ZS2058进行PCR扩增,得到亚油酸异构酶全基因序列,克隆至乳酸克鲁维酵母表达载体pKLAC1,电转化得重组菌pKLAC1-LAI /Kluyveromyces lactis GG799。结果:SDS-PAGE检测,重组菌进行分泌表达获得目的蛋白,大小约为67 kDa;气相色谱(Gas Chromatogram,GC)检测到共轭亚油酸(conjugated linoleic acids,CLA)典型峰。结论:植物乳杆菌ZS2058中的亚油酸异构酶基因在乳酸克鲁维酵母中得到分泌表达,重组酶转化效率约为26%。  相似文献   

4.
人血清白蛋白-C肽融合蛋白在毕赤酵母中的分泌表达   总被引:1,自引:0,他引:1  
目的构建重组表达人血清白蛋白(HSA)-C肽(CP)融合蛋白的毕赤酵母表达菌株.方法根据表达系统的密码子偏好性优化CP基因,酶切连接pBlue-HSA质粒(HSA1 800bp)和CP(100bp)基因,将HSA-CP融合基因双酶切后插入分泌表达栽体pPIC9K中,重组质粒pPIC9K-HSA-CP经SalⅠ线性化后,电击转化毕赤酵母GS115,表型筛选Mut 转化子.PCR鉴定后,用甲醇诱导摇瓶分泌表达.结果融合基因约为1 900bp,序列测定正确.SDS-PAGE分析表明表达融合蛋白的相对分子量约为70kD,摇瓶培养表达量为140mg/L,Western blot鉴定显示表达的融合蛋白为HSA和CP的杂合分子.结论实现了HSA-CP融合蛋白在毕赤酵母中的分泌表达,细胞活性研究显示HSA-CP融合蛋白对人胚肾293细胞的生长具有一定的促进作用.  相似文献   

5.
以增强型绿色荧光蛋白基因(egfp)为报告基因评价不同启动子在乳酸克鲁维酵母(Kluyveromyces lactis)中的转录功能,寻找高效表达外源蛋白的启动子。以改造后载体pKLAC1*为基础,PCR克隆来源于K.lactis、酿酒酵母(Saccharomyces cerevisiae)和Spathaspora passalidarum中7个不同的启动子,采用重叠延伸PCR分别与egfp融合后插入pKLAC1*,Bst XI线性化重组表达载体后电转化K.lactis GG799获得重组菌,利用特异性引物PCR扩增法快速筛选获得不同启动子调控下的单拷贝整合重组菌,通过定性和定量分析绿色荧光蛋白(EGFP)的表达,比较不同启动子的转录活性。荧光显微镜观察结果表明,K.lactis来源的pKladh4、pKlmal22,S.cerevisiae来源的p Scgal7、pScgpd1,S.passalidarum来源的pSpmal1、pSpmal6、pSpgal1均成功调控EGFP的表达。荧光分光光度计定量测定结果表明,重组菌在p Kladh4、pScgal7、pScgpd1调控下荧光强度分别为2.82、2.92和4.74,且在相应的诱导条件下转录能力分别提高了13%、57%和22%,均高于当前应用最广泛的强启动子pKllac4(荧光强度为2.13)。探究了不同来源启动子在K.lactis中的功能,pKladh4、pScgal7、pScgpd1具有高效起始转录能力,其中pScgpd1在K.lactis中的应用为首次报道。  相似文献   

6.
凝乳酶在奶酪加工中应用广泛,为获得高活性的凝乳酶制剂,采用乳酸克鲁维酵母为宿主,首次对经密码子优化的牛凝乳酶原基因进行表达。利用DNAWorks3.0软件辅助设计,用两步PCR法合成了小牛凝乳酶原基因(GenBank Accession No.AA30448)。将该基因插入酵母表达载体pKLAC1,构建了重组载体pKLAC1-Prochy,并用电脉冲法将线性化的重组质粒转化到乳酸克鲁维酵母GG799中。通过含1%酪蛋白的YEPD平板活性筛选,PCR鉴定,最后获得了一株多拷贝整合的基因工程菌chy1。该菌株可分泌表达牛凝乳酶原,经SDS-PAGE分析,证明重组牛凝乳酶原的分子量约为41kDa,符合预期大小,酸化处理后为36kDa,证明可以正确自我剪切。液体培养96h后,酶活最高达到99.67SU/mL。分别以半乳糖和葡萄糖为碳源的条件下表达,其酶活性差异不大,说明在发酵期间,可以不经过半乳糖诱导即可产生高水平的牛凝乳酶原产物。该工程菌的获得为进一步优化产酶条件及放大工艺提供了条件,并为凝乳酶的工业化生产奠定了基础。  相似文献   

7.
人β干扰素-血清白蛋白融合蛋白在毕赤酵母中的分泌表达   总被引:16,自引:1,他引:15  
利用重叠PCR技术在体外拼接IFN β和HSA基因,将得到的融合基因插入到毕赤酵母分泌型表达载体pPIC9K中,置于启动子AOX1和α交配因子信号肽的作用下,分泌表达融合蛋白IFNβ-HSA。重组质粒pPIC9K-IFNβ-HSA经SalI线性化,电击转化毕赤酵母KM71,经G418筛选得到高拷贝转化子。PCR鉴定后,用甲醇诱导表达,SDS-PAGE和Western blot分析表达的融合蛋白IFNβ-HSA表明该蛋白分子量约为90kDa且具有HSA的抗原性;用细胞病变抑制法测定发酵液上清中融合蛋白的干扰素活性约为640IU/ml。  相似文献   

8.
以乙醇耐受力较强的酿酒酵母为受体菌,构建了能够分泌菊粉酶的基因工程菌并进行了菊芋粉的生料发酵。首先,以马克斯克鲁维酵母Kluyveromyces marxianus中的基因组DNA为模板,PCR扩增菊粉酶编码基因inu,分别使用菊粉酶自身启动子和酵母磷酸甘油激酶 (Phosphoglycerate kinase,pgk) 启动子,构建重组表达质粒HO/p-inu和HO/pgk-inu。经NotⅠ线性化后,采用电击法转化酿酒酵母工业菌株Saccharomyces cerevisiae 6525,分别得到含菊  相似文献   

9.
根据模仿葡萄球菌(Staphylococcus simulans)的溶葡球菌酶基因序列以及乳酸克鲁维酵母密码子偏好性设计引物扩增溶葡球菌酶基因表达片段,构建溶葡球菌酶(lysostaphin,Lys)基因表达载体(p KLAC1-Lys),转化乳酸克鲁维酵母(K.lactis GG799),实现了Lys基因的分泌表达。对重组菌株(K.lactis GG799/p KLAC1-Lys)进行NTG随机化学诱变,优化表达条件,筛选获得高表达菌株,并通过Ni-NTA亲和层析纯化蛋白并研究其酶学性质。结果表明:通过诱变重组溶葡球菌酶乳酸克鲁维菌株,Lys酶比活性提高了约5.2倍(约8 000U/L)。最适接种量为40g/L,诱导过程中每24h添加一次终浓度为20g/L的半乳糖和NH_4NO_3可提高酶比活性,最适表达p H为7.0~7.5,最适反应p H为7.0~8.0,最适反应温度为37℃。实验表明,低于40℃,p H 3~6之间时,重组溶葡球菌酶较稳定。Sr~(2+)对其酶活性有明显的促进作用,Ba~(2+)、Ca~(2+)、Zn~(2+)、Cu~(2+)、Mn~(2+)、Mg~(2+)对其有明显的抑制作用。  相似文献   

10.
目的:在毕赤酵母中表达新疆家蚕抗菌肽基因(Cecropin-XJ)并检测其活性.方法:根据作者实验室已克隆获得的新疆家蚕抗菌肽(Cecropin-XJ)基因设计引物,通过PCR方法扩增Cecropin-XJ,将PCR产物和表达载体pPIC9K用EcoR Ⅰ及Not Ⅰ双酶切,构建重组表达质粒pPIC9K-(Cecropin-XJ),酶切及测序正确后,电转化到毕赤酵母GS115,对分泌表达的重组蛋白进行活性检测.结果:PCR扩增获得192 bp Cecropin-XJ,成功构建pPIC9K-Cecropin-XJ,优化诱导条件证明在pH 6的BMMY培养液中,0.5%甲醇诱导约48h后,获得的表达产物活性较强,对多种革兰氏阴性菌和阳性菌具有抗菌活性,在100℃条件下,其活性可维持100min以上.结论:新疆家蚕抗菌肽在毕赤酵母中分泌表达,为大规模发酵生产奠定了基础.  相似文献   

11.
通过PCR方法从扣囊复膜孢酵母基因组DNA中克隆获得α-淀粉酶基因成熟肽编码区(SfA),插入乳酸克鲁维酵母表达载体pKLACl的d因子信号肽下游,构建重组表达载体pKLACl-SfA。重组载体转化乳酸克鲁维酵母GG799,筛选获得表达α-淀粉酶SfA水平较高的重组茵。酶活检测和SDS.PAGE电泳检测均显示,重组茵分泌重组酶SfA到发酵液中。酶学性质研究表明:SfA最适温度为45℃,最适pH5.0,在pH4.5~5.5、50℃条件下保持稳定。Ca2+等二价金属离子对SfA酶活有激活作用,EDTA强烈的抑制SfA活性。HPLC分析显示SfA水解糊精获得麦芽寡糖和少量葡萄糖,其中麦芽三糖是主要产物,占水解产物总量的52%。  相似文献   

12.
目的:在乳酸克鲁维酵母中表达人可溶性肿瘤坏死因子受体Ⅱ(sTNFRⅡ)与IgG Fc的融合蛋白。方法:首先获得sTNFRⅡ-IgGFc融合基因片段,然后构建至乳酸克鲁维酵母表达载体pKLAC1中,获得sTNFRⅡ-IgGFc的表达载体,并将其电转化乳酸克鲁维酵母(Δura3),通过ELISA方法筛选高表达sTNFRⅡ-IgGFc融合蛋白的重组乳酸克鲁维酵母菌株,采用还原和非还原SDS-PAGE分析融合蛋白是否形成二聚体结构,Western印迹验证sTNFRⅡ-IgGFc融合蛋白在乳酸克鲁维酵母(Δura3)中的表达。结果:构建了sTNFRⅡ-IgGFc表达载体pKLAC1-sTNFRⅡ-IgGFc,获得了表达sTNFRⅡ-IgGFc的乳酸克鲁维酵母菌株,SDS-PAGE和Western印迹表明该融合蛋白能自发形成类似于抗体的二聚体结构。结论:实现了sTNFRⅡ-IgGFc融合蛋白在乳酸克鲁维酵母(Δura3)中的表达。  相似文献   

13.
The yeast Kluyveromyces lactis has been extensively used as a host for heterologous protein expression. A necessary step in the construction of a stable expression strain is the introduction of an integrative expression vector into K. lactis cells, followed by selection of transformed strains using either medium containing antibiotic (e.g., G418) or nitrogen-free medium containing acetamide. In this study, we show that selection using acetamide yields K. lactis transformant populations nearly completely comprised of strains bearing multiple tandem insertions of the expression vector pKLAC1 at the LAC4 chromosomal locus, whereas an average of 16% of G418-selected transformants are multiply integrated. Additionally, the average copy number within transformant populations doubled when acetamide was used for selection compared to G418. Finally, we demonstrate that the high frequency of multicopy integration associated with using acetamide selection can be exploited to rapidly construct expression strains that simultaneously produce multiple heterologous proteins or multisubunit proteins, such as Fab antibodies.  相似文献   

14.
The bacteriocin enterocin A (EntA) produced by Enterococcus faecium T136 has been successfully cloned and produced by the yeasts Pichia pastoris X-33EA, Kluyveromyces lactis GG799EA, Hansenula polymorpha KL8-1EA, and Arxula adeninivorans G1212EA. Moreover, P. pastoris X-33EA and K. lactis GG799EA produced EntA in larger amounts and with higher antimicrobial and specific antimicrobial activities than the EntA produced by E. faecium T136.  相似文献   

15.
16.
In several organisms used for recombinant protein production, integration of the expression cassette into the genome depends on site-specific recombination. In general, the yeast Kluyveromyces lactis shows low gene-targeting efficiency. In this work, two K. lactis ku80 ? strains defective in the non-homologous end-joining pathway (NHEJ) were constructed using a split-marker strategy and tested as hosts for heterologous gene expression. The NHEJ pathway mediates random integration of exogenous DNA into the genome, and its function depends on the KU80 gene. KU80-defective mutants were constructed using a split-marker strategy. The vectors pKLAC1/Plg1 and pKLAC1/cStpPlg1 were used to evaluate the recovered mutants as hosts for expression of pectin lyase (PNL) and the fusion protein streptavidin–PNL, respectively. The transformation efficiency of the ku80 ? mutants was higher than the respective parental strains (HP108 and JA6). In addition, PNL secretion was detected by PNL assay in both of the K. lactis ku80 ? strains. In HP108ku80?/cStpPlg1 and JA6ku80?/Plg1 cultures, the PNL extracellular specific activity was 551.48 (±38.66) and 369.04 (±66.33) U/mg protein. This study shows that disruption of the KU80 gene is an effective strategy to increase the efficiency of homologous recombination with pKLAC1 vectors and the production and secretion of recombinant proteins in K. lactis transformants.  相似文献   

17.
Secretion of recombinant proteins is a common strategy for heterologous protein expression using the yeast Kluyveromyces lactis. However, a common problem is degradation of a target recombinant protein by secretory pathway aspartyl proteases. In this study, we identified five putative pfam00026 aspartyl proteases encoded by the K. lactis genome. A set of selectable marker-free protease deletion mutants was constructed in the prototrophic K. lactis GG799 industrial expression strain background using a PCR-based dominant marker recycling method based on the Aspergillus nidulans acetamidase gene (amdS). Each mutant was assessed for its secretion of protease activity, its health and growth characteristics, and its ability to efficiently produce heterologous proteins. In particular, despite having a longer lag phase and slower growth compared with the other mutants, a Δyps1 mutant demonstrated marked improvement in both the yield and the quality of Gaussia princeps luciferase and the human chimeric interferon Hy3, two proteins that experienced significant proteolysis when secreted from the wild-type parent strain.  相似文献   

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