首页 | 官方网站   微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 171 毫秒
1.
【目的】在毕赤酵母中表达特异腐质霉Humicola insolens的中性内切葡聚糖酶Ⅱ,并对其性质加以研究。【方法】利用RT-PCR的方法,以特异腐质霉(Humicola insolens)NC3总RNA为模板,克隆到中性内切葡聚糖酶Ⅱ基因(egⅡ)的cDNA。将其插入表达载体pPIC9K,重组质粒经线性化后电击转化毕赤酵母(Pichia pastoris)菌株GS115。【结果】SDS-PAGE和酶活的检测结果均表明:egⅡ基因在毕赤酵母中成功表达。重组酶的部分酶学性质研究表明,该酶的最适反应温度为70°C,且在65°C以下具有较好的热稳定性。最适反应pH为6.5,在pH 6.0?7.0之间有较好的稳定性。【结论】用重组毕赤酵母可高效表达外源中性内切葡聚糖酶,为其今后在工业应用奠定了基础。  相似文献   

2.
【目的】通过在毕赤酵母Komagataella pastoris GS115中外源表达来源于霍霍巴[Simmondsia chinensis(Jojoba)]的脂肪酰-Co A还原酶Jojoba FAR,利用微生物发酵生产脂肪醇。【方法】以质粒p RL105为模板PCR扩增获得霍霍巴脂肪酰-Co A还原酶的编码基因,以p GAPZαA为载体构建重组表达质粒p GAP-far,并通过电转化法转入K.pastoris GS115,筛选转化子并发酵,气相色谱-质谱联用检测发酵产物。【结果】构建了毕赤酵母重组菌株p GAPZ-far-GS115,通过摇瓶发酵检测到脂肪醇的合成。随后在7 L规模的发酵罐上发酵验证,得到脂肪醇产量为134.74 mg/L,产率为1.22 mg/(L·h)。【结论】实现了脂肪醇在毕赤酵母中的生物合成,为工业上利用毕赤酵母生产脂肪醇奠定了一定基础。  相似文献   

3.
【背景】脂肪酶广泛应用于纺织、食品、药品、皮革等工业领域,其在微生物中的异源表达研究进一步促进了脂肪酶产品的生产和应用。【目的】实现来源于费希尔曲霉的脂肪酶在毕赤酵母中的高效异源表达,探究其合适的表达及发酵条件,提高产量,降低成本。【方法】对费希尔曲霉的脂肪酶编码基因进行密码子优化后,应用pPIC9k质粒整合到毕赤酵母GS115基因组上,构建高产脂肪酶Lip605的毕赤酵母工程菌;并通过响应面发酵条件优化、筛选最适伴侣蛋白和高密度发酵相结合的方法,综合提高脂肪酶表达量。【结果】确定高产脂肪酶毕赤酵母工程菌的最优摇瓶发酵产酶条件为:甲醇3.103%(体积比),生物素0.4 mg/L,酵母粉11.5 g/L,酵母基础氮源培养基(yeast nitrogen base,YNB) 13.4 g/L,初始pH 6.4,装液量50 mL/250 mL,转速220 r/min,温度24°C,培养时间40 h。优化后的胞外脂肪酶酶活达到72.34 U/mL,较优化前提高了5.8倍;进一步选择12个伴侣蛋白分别与脂肪酶Lip605进行共表达,其中共表达伴侣蛋白Rpl10(pPICZA-RPL10)效果最佳,可使Lip605表达量进一步提高46.8%;在此基础上,经过10 L发酵罐分批补料的高密度发酵,工程菌株发酵142 h,胞外脂肪酶酶活最高达到680 U/mL,蛋白浓度为15.89 g/L。【结论】应用复合策略有效提高了脂肪酶Lip605在毕赤酵母中的发酵产量,为其进一步工业化生产奠定了良好的基础。  相似文献   

4.
植酸酶和内切葡萄糖苷酶广泛应用于动物饲料添加剂中,能更有效地帮助饲料的利用,同时为动物的生命活动提供必需的重要物质。首先构建重组质粒pPICZα-EG,经过线性化后,电转化到含有植酸酶phyA基因的毕赤酵母感受态细胞中,构成含有植酸酶基因和内切葡萄糖苷酶基因的重组体菌株GS115-phyA-EG。经甲醇诱导后其活性分别达到出发菌株GS115-phyA和GS115-EG的39.4%和56.2%。酶学性质的分析显示,最适反应温度和最适反应的pH值分别为55℃和5.5,植酸酶和内切葡萄糖苷酶在温度为45℃~55℃,pH值为4.5~5.5时,酶活相对稳定,均能达到最高酶活的80%以上。结果表明这种在同一个系统种同时表达2种酶的方法能更好地节约时间和成本,使其在饲料工业的应用上有更广阔的前景。  相似文献   

5.
【目的】提高柞蚕溶菌酶在毕赤酵母中的表达量,对柞蚕溶菌酶活性进行测定。【方法】根据毕赤酵母密码子偏爱性对柞蚕溶菌酶基因进行优化,并在目的基因3′端加上6个组氨酸标签,优化后的基因克隆至表达p PIC9K载体中,并通过电转化的方法导入毕赤酵母GS115中。利用不同浓度梯度的G418进行高拷贝转化子的筛选,经甲醇诱导实现分泌表达。通过硫酸铵盐析、镍柱亲和层析等工艺分离纯化柞蚕溶菌酶,利用琼脂扩散方法测定柞蚕溶菌酶对溶壁微球菌、金黄色葡萄球菌、枯草芽孢杆菌、大肠杆菌、苍白杆菌及过氧化醋杆菌的抑菌作用,利用比浊法测定酶活大小。【结果】密码子优化后的柞蚕溶菌酶在诱导温度25°C、甲醇量0.75%和p H 7.0条件下实现了最高表达,表达量达到了2.4 g/L,并且纯化后的柞蚕溶菌酶酶活达到23 970 U/mg。【结论】密码子优化后的柞蚕溶菌酶在毕赤酵母中实现了高效表达,纯化后的柞蚕溶菌酶对溶壁微球菌、金黄色葡萄球菌、枯草杆菌、大肠杆菌、苍白杆菌及过氧化醋杆菌均有抑菌作用。  相似文献   

6.
目的:改造毕赤酵母使其异源合成类黄酮生物合成途径的重要中间体肉桂酸、对香豆酸,并优化前体芳香族氨基酸生物合成途径以提高毕赤酵母的生产能力。方法:在毕赤酵母GS115中利用乙醇诱导型人工转录系统表达Rhodotorula glutinis来源的苯丙氨酸解氨酶,并在该重组菌株中分别过表达胞内芳香族氨基酸生物合成途径中的关键酶或其突变体以进行优化。结果:异源表达苯丙氨酸解氨酶可使毕赤酵母将自身产生的L-苯丙氨酸、L-酪氨酸转化为肉桂酸(38.8 mg/L)、对香豆酸(34.2 mg/L),而通过过表达相关酶进行优化,最终肉桂酸和对香豆酸的产量分别达到124.1 mg/L和302.0 mg/L。结论:利用新的异源宿主毕赤酵母成功合成了肉桂酸、对香豆酸,并对胞内的芳香族氨基酸生物合成途径进行了优化,表明毕赤酵母具有生产黄酮类化合物的应用潜力,也为其他芳香族氨基酸衍生物或植物化合物在毕赤酵母中的异源合成奠定了基础。  相似文献   

7.
【目的】在毕赤酵母中高水平表达蓝状菌(Talaromyces leycettanus JCM12802)来源的高温果胶甲酯酶,并对其进行酶学性质研究,具有高催化效率的高温果胶甲酯酶有望能广泛应用于低甲氧基果胶的生产,优化生产工艺,提高转化率,降低生产成本。【方法】利用RT-PCR的方法,以蓝状菌(T.leycettanus JCM12802)总RNA为模板,克隆得到果胶甲酯酶基因(Pme T)的cDNA。将其插入表达载体p PIC9K,并转化毕赤酵母(Pichia pastoris)菌株GS115,高活性的阳性转化子进行高密度发酵研究。【结果】重组酵母的果胶甲酯酶表达水平达到428 U/m L,并进一步鉴定了重组果胶甲酯酶的酶学性质。该酶的最适反应温度为75°C,且在85°C以下具有较好的热稳定性。最适反应p H为4.0,在p H 2.0-7.0之间有较好的稳定性。【结论】用重组毕赤酵母可高效表达蓝状菌来源的高温果胶甲酯酶,为其今后在工业上的应用奠定了基础。  相似文献   

8.
酵母表面展示分选酶底物用于分选酶活性检测   总被引:3,自引:0,他引:3  
罗立新  吴琳  林影 《微生物学报》2009,49(11):1534-1539
摘要:【目的】以EGFP标签检测分选酶底物QALPETGEE在毕赤酵母表面的表达,然后将酵母表面展示的底物与分选酶相互作用以检测分选酶活性。【方法】以pcDNA-myc-his-EGFP为模板,通过PCR技术将QALPETGEE-linker-EGFP基因连接到穿梭载体pKFS上,构建QALPETGEE-linker-EGFP酵母表面展示载体后转化至毕赤酵母(Pichia pastoris)GS115中。重组菌经培养,利用荧光显微镜检测重组酵母的荧光强度,然后通过荧光分光光度计检测分选酶与底物相互作用后产  相似文献   

9.
草鱼生长激素基因在毕赤酵母中的表达   总被引:2,自引:0,他引:2  
将草鱼生长激素基因(cGH)的cDNA亚克隆到酵母表达载体pPIC9K中,经电击转化导入毕赤巴斯德酵母GS115菌株,获得转化子。菌落PCR技术筛选证实cGH已经整合到了酵母染色体上。对重组酵母进行诱导表达,SDS-PAGE和Western印迹分析,结果表明cGH的毕赤巴斯德酵母GS115菌株中获得了高效表达。  相似文献   

10.
赵鹤云  肖潇  徐莉  刘云  闫云君 《微生物学报》2011,51(10):1374-1381
【目的】克隆解脂耶氏酵母(Yarrowia lipolytica)脂肪酶LIP4和LIP5的cDNA序列,研究其基因结构,并实现其在毕赤酵母中的功能表达,以探讨其酶学性质。【方法】利用反转录PCR首次扩增LIP4和LIP5的编码基因,用SignalP 3.0分析其基因序列,然后分别构建胞内表达载体pPIC3.5K-Lip4、pPIC3.5K-Lip5和胞外表达载体pPIC9K-Lip4、pPIC9K-Lip5,将其转入毕赤酵母GS115中表达,以NTA树脂纯化酶蛋白,研究其酶学性质。【结果】cDNA序列测序结果显示两者均不含内含子,酶蛋白的氨基酸序列中含有典型脂肪酶的活性三联体结构和五肽保守区;酶学性质研究表明,两者的最适底物均为癸酸(C8)对硝基苯酚酯,最适pH为7.0,最适温度为40℃,但LIP4对pH和温度更敏感;两者均能被Ca2+激活,且LIP5还能为Mg2+激活,但均被Hg2+、乙二胺四乙酸(EDTA)和苯甲基磺酰氟(PMSF)强烈抑制。【结论】首次克隆了解脂耶氏酵母脂肪酶LIP4和LIP5编码基因,实现了其在毕赤酵母中的活性表达,并初步研究了其酶学性质,为上述脂肪酶的应用及进一步深入研究解脂耶氏酵母脂肪酶家族奠定了基础。  相似文献   

11.
阻断消耗途径提高毕赤酵母工程菌S-腺苷甲硫氨酸产量   总被引:1,自引:0,他引:1  
【背景】S-腺苷甲硫氨酸(S-adenosyl-L-methionine, SAM)作为所有生物体内的重要中间代谢物,不仅可作为膳食补充剂,还具有良好的临床应用价值。【目的】将毕赤酵母重组菌GS115/DS16的SAM消耗途径阻断,进一步提高SAM的产量。【方法】分别敲除毕赤酵母重组菌GS115/DS16的S-腺苷同型半胱氨酸水解酶基因sah1、S-腺苷甲硫氨酸脱羧酶基因spe2和L-甲硫氨酰tRNA合酶基因msm1,构建工程菌G/Dsah、G/Dspe和G/Dmsm。检测3个工程菌的生长和SAM产量,以及L-Met添加量对SAM积累的影响。【结果】与出发菌GS115/DS16相比,工程菌G/Dsah、G/Dspe和G/Dmsm的单位菌体SAM产量分别提高了29.3%、55.6%和24.8%,其生长无显著差异。L-Met添加量优化后(0.06%),G/Dsah和G/Dmsm单位菌体的SAM产量分别提高了26.4%和28.9%。【结论】构建的毕赤酵母工程菌可用于SAM的工业化生产,该代谢工程策略可用于改进其他化学品的生产。  相似文献   

12.
The ORF encoding the Debaryomyces castellii CBS 2923 phytase was isolated. The deduced 461-amino-acid sequence corresponded to a 51.2 kDa protein and contained the consensus motif (RHGXRXP) which is conserved among phytases. No signal sequence cleavage site was detected. Nine potential N-glycosylation sites have been predicted. The protein shared 21–69% sequence identities with various phytases of yeast or fungal origin. Heterologous expression of the D. castellii CBS 2923 phytase in the methylotrophic yeast Pichia pastoris was tested under both the P. pastoris inducible alcohol oxidase (AOX1) promoter and the constitutive glyceraldehyde-3-phosphate dehydrogenase (GAP) promoter. Maximum production levels obtained were 476 U ml−1, with the AOX1 expression system and 16.5 U ml−1 with the GAP one. These productions corresponded to a 320-fold and a 10-fold overexpression of the protein, respectively as compared to the homologous production. The biochemical characteristics of the recombinant phytase were identical to those of the native enzyme.  相似文献   

13.
[目的] 本研究旨在结合酵母菌蛋白质二硫键异构酶(protein disulfide isomerase,PDI)与其底物蛋白鸡胱抑素C (chicken cystatin C,cC)在酵母中的共表达,理解PDI影响外源蛋白合成与表达的调控规律。运用转录组深度测序技术(RNA-Seq)筛选差异基因,调取并鉴定影响cC表达的关键基因,为解析外源蛋白高效表达机制,改造工程菌株提供理论支撑。[方法] 以巴斯德毕赤酵母GS115、GS115-cC为出发菌株,采用电转的方法将携带PDI编码基因的载体pPIC3.5K转入到GS115/GS115-cC菌株,使其在菌株中过表达,研究过表达PDI对cC表达的影响。采用RNA-Seq深度测序方法,研究重组毕赤酵母基因表达差异情况。并结合KEGG注释结果对数据进行分析,挑选差异显著表达基因进行验证,初步明确其在蛋白表达调控方面的功能。[结果] 本研究通过构建过表达PDI重组毕赤酵母菌株,使得外源蛋白cC的表达量显著增加。利用RNA-seq技术分析过表达PDI菌株与正常菌株的差异,最终筛选了373个差异表达基因,其中有122个差异基因注释到KEGG生物通路,包括12个基因注释到蛋白质转运和分解代谢途径,21个基因注释到蛋白质折叠分选和降解途径,以及24个基因参与蛋白质的翻译途径等。[结论] 在毕赤酵母中过表达PDI能显著增加外源蛋白cC的表达量。通过对过表达与正常表达PDI的毕赤酵母基因的表达谱分析,初步确定了其中一些转录情况变化显著的基因,明确了它们参与的细胞途径和信号通路,为改造具有高效率表达淀粉样蛋白的酵母菌株奠定基础。  相似文献   

14.
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   

15.
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   

16.
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   

17.
Endo-β-glucanase II (EG II) gene cDNA was isolated from the fungus Humicola insolens H31-3 by RT-PCR. It was cloned into the expression vector pGAPZαA. The resultant recombinant plasmid was introduced into Pichia pastoris GS115 by electroporation after being linearized by BspHI digestion. The recombinant Pichia pastoris strain was obtained and SDS-PAGE showed that the molecular weight of the expression protein was about 55 kD.The cultivation condition and the characteristics of the recombinant EG II were also explored. __________ Translated from Microbiology, 2006, 33(6): 68273 [译自: 微生物学 通报]  相似文献   

18.
Various yeast strains were examined for the microbial reduction of ethyl-3-oxo-3-phenylpropanoate (OPPE) to ethyl-(S)-3-hydroxy-3-phenylpropanoate (S-HPPE), which is the chiral intermediate for the synthesis of a serotonin uptake inhibitor, Fluoxetine. Kluyveromyces lactis KCTC 7133 was found as the most efficient strain in terms of high yield (83% at 50 mM) and high optical purity ee > 99% of S-HPPE. Based on the protein purification, activity analysis and the genomic analysis, a fatty acid synthase (FAS) was identified as the responsible β-ketoreductase. To increase the productivity, a recombinant Pichia pastoris GS115 over-expressing FAS2 (α-subunit of FAS) of K. lactis KCTC7133 was constructed. In the optimized media condition, the recombinant P. pastoris functionally over-expressed the FAS2. Recombinant P. pastoris showed 2.3-fold higher reductase activity compared with wild type P. pastoris. With the recombinant P. pastoris, the 91% yield of S-HPPE was achieved at 50 mM OPPE maintaining the high optical purity of the product (ee > 99%).  相似文献   

19.
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   

20.
Lim MH  Lee OH  Chin JE  Ko HM  Kim IC  Lee HB  Im SY  Bai S 《Biotechnology letters》2008,30(12):2125-2130
Phytase liberates inorganic phosphate from phytic acid (myo-inositol hexakisphosphate) which is the major phosphate reserve in plant-derived foods and feeds. An industrial strain of Saccharomyces cerevisiae expressing the Debaryomyces castellii phytase gene (phytDc) and D. occidentalis α-amylase gene (AMY) was developed. The phytDc and AMY genes were constitutively expressed under the ADC1 promoter in S. cerevisiae by using the δ-integration system, which contains DNA derived exclusively from yeast. The recombinant industrial strain secreted both phytase and α-amylase for the efficient degradation of phytic acid and starch as main components of plant seeds. This new strain hydrolyzed 90% of 0.5% (w/v) sodium phytate within 5 days of growth and utilized 100% of 2% (w/v) starch within 48 h simultaneously.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司    京ICP备09084417号-23

京公网安备 11010802026262号