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1.
利用Red同源重组技术构建产L-苏氨酸的基因工程菌   总被引:1,自引:0,他引:1  
利用Red重组技术构建不同基因突变的L-苏氨酸工程菌大肠杆菌ITHR,研究单敲除metA、ilvA和双敲除metA、ilvA基因后对L-苏氨酸积累的影响。应用质粒pKD46介导的Red同源重组系统,通过第一次同源重组将拟敲除基因替换为氯霉素抗性基因,再通过重组酶在FRT位点发生第二次同源重组,消除抗性基因,成功敲除了菌株ITHR体内苏氨酸合成的代谢旁路途径中的metA和ilvA基因,构建了三株不同的基因突变株。将携带苏氨酸操纵子的工程质粒pWYE065电转化入敲除不同基因的突变株中,构建基因工程菌。经5 L发酵罐发酵产酸实验,未敲除任何基因的菌株ITHR/pWYE065 L-苏氨酸的产量为5.55±0.51 g/L,metA基因单敲除菌株ITHR△metA/pWYE065 L-苏氨酸产量为9.77±1.83 g/L,ilvA基因单敲除菌株ITHR△ilvA/pWYE065 L-苏氨酸产量为8.65±1.42 g/L,同时敲除ilvA和metA基因的菌株ITHR△metA△ilvA/pWYE065 L-苏氨酸的产量增加到13.6±1.14 g/L。通过敲除L-苏氨酸的旁路代谢途径中的关键酶的基因,可以增强L 苏氨酸积累的效果,为L-苏氨酸工程菌的进一步改造奠定了基础。  相似文献   

2.
苏氨酸脱水酶是细菌L-异亮氨酸合成途径中的关键酶,酶活力受终产物L-异亮氨酸的反馈抑制。苏氨酸脱水酶包含催化结构域及调控结构域,其中调控结构域所起的作用有待进一步研究。本文在大肠杆菌中分别克隆表达了四种不同的苏氨酸脱水酶:来自谷氨酸棒杆菌的苏氨酸脱水酶CgIlvA及其不合调控结构域的突变体CgIlvA~M和来自大肠杆菌的苏氨酸脱水酶EcIlvA及其不合调控结构域的突变体EcIlvA~M。通过蛋白纯化和酶活分析发现,CgIlvA~M和EcIlvA~M的酶活力比CgIlvA和EcIlvA的酶活力有所降低,但它们不再受L-异亮氨酸的反馈抑制,说明L-异亮氨酸对苏氨酸脱水酶的反馈抑制是通过其调控结构域来实现的。  相似文献   

3.
以谷氨酸棒杆菌(Corynebacterium glutamicum) SYPS-062基因组DNA为模板,扩增得到L-丝氨酸脱水酶(L-SerDH)的编码基因sdaA。将其克隆到表达载体pET-28a(+),并在E.coli BL21(DE3)中诱导表达,对纯化的L-SerDH进行了酶活测定,并与来自C.glutamicum ATCC13032的重组L-SerDH进行了比较,结果显示,两种不同菌株来源的重组L-SerDH降解L-丝氨酸的酶比活力差异并不显著。在此基础上敲除菌株SYPS-062 的sdaA基因,探讨该基因对C.glutamicum SYPS-062生长及产酸的影响。通过构建自杀型重组质粒pK18mobsacB-△sdaA,电击转入C.glutamicum SYPS-062中,以同源重组的方式获得了sdaA基因缺失突变株,并用PCR方法对突变株C.glutamicum SYPS-062△sdaA进行了验证。与出发菌株相比,突变菌株生长缓慢,单位菌体L-丝氨酸的产量(YP/X)提高了15.13%。  相似文献   

4.
通过PCR技术从粘质沙雷氏菌H3010基因组DNA中扩增出该D-乳酸脱氢酶基因,连接至pET-28a(+)表达载体,转入大肠杆菌BL21 (DE3)中进行了重组表达,优化了酶纯化的条件,并对其酶学性质进行初步研究.结果表明,获得的该酶编码基因全长993 bp,编码330个氨基酸,大小为37 kDa.经优化表达及纯化条件后重组酶纯度可达90%.酶学性质研究发现,该重组酶最适反应温度为60℃,最适酶促反应pH为7.5(0.2 mol/L磷酸盐缓冲液),37℃下测得对底物丙酮酸的动力学参数Km =3.39 mmol/L,Vmax =6.87 mmol/( mg · min),对辅酶NADH的动力学参数Km=1.43 mmol/L,Vmax=1.61 mmol/( mg· min).为酶法生产D-乳酸及利用代谢工程构建产D-乳酸的基因工程菌打下基础.  相似文献   

5.
【目的】以重组大肠杆菌表达的枯草芽孢杆菌(Bacillus subtilis)L-异亮氨酸双加氧酶(L-isoleucine dioxygenase,IDO)为研究对象,考察其催化L-异亮氨酸(L-Ile)羟基化反应的影响因素,构建IDO催化合成羟基氨基酸的反应体系。【方法】通过Ni-NTA亲和层析法从重组大肠杆菌(Escherichia coli)BL21/p ET28a-ido中纯化获得重组IDO,以L-Ile为底物,考察重组IDO催化羟基化反应的影响因素,并进一步针对耦联反应优化α-酮戊二酸(α-KG)在重组IDO酶促转化体系中的添加浓度。【结果】基于重组IDO催化L-Ile羟基化的活性测定,计算该酶Km为0.247 mmol/L,kcat为1.260 s-1,kcat/Km为5.101 L/(mmol·s),与其他同源酶动力学参数比较分析表明,重组IDO的底物亲和性及催化效率较高。重组IDO催化反应的最适温度为20°C、最适p H为7.0;在35°C以下较为稳定;反应体系中Fe2+最适浓度为1 mmol/L。重组IDO可催化不同L-氨基酸反应,对L-异亮氨酸、L-正亮氨酸、L-甲硫氨酸的活性较高。通过优化α-KG浓度,反应体系中添加30 mmol/Lα-KG时,可将底物浓度提高至70 mmol/L,产物4-羟基异亮氨酸(4-HIL)的摩尔产率达66.20%,表明α-KG作为反应耦联辅因子,其浓度对重组IDO催化L-Ile羟基化具有显著影响。【结论】重组IDO的底物亲和性、催化效率、最适催化条件、稳定性等基本性质有利于催化L-Ile羟基化反应。在其催化反应体系中,α-KG作为反应耦联辅因子,对酶促转化效果影响显著。研究结果为4-HIL及其他羟基氨基酸的酶促转化提供了研究基础。  相似文献   

6.
赵连真  张梁  石贵阳 《微生物学通报》2013,40(12):2161-2170
【目的】克隆谷氨酸棒杆菌来源L-天冬氨酸α-脱羧酶基因, 实现其在大肠杆菌中的异源表达, 并进行酶转化L-天冬氨酸合成β-丙氨酸的研究。【方法】PCR扩增谷氨酸棒杆菌L-天冬氨酸α-脱羧酶基因pand, 构建表达载体pET24a(+)-Pand, 转化宿主菌大肠杆菌BL21(DE3), 对重组菌进行诱导表达, 表达产物经DEAE离子交换层析和G-75 分子筛层析纯化后进行酶学性质研究, 然后进行酶转化实验, 说明底物和产物对酶转化的影响。【结果】重组菌SDS-PAGE分析表明Pand表达量可达菌体总蛋白的50%以上, AccQ·Tag法检测酶活达到94.16 U/mL。该重组酶最适反应温度为55 °C, 在低于37 °C时保持较好的稳定性, 最适pH为6.0, 在pH 4.0?7.0范围内有较好的稳定性。酶转化实验说明: 底物L-天冬氨酸和产物β-丙氨酸对转化反应均有抑制作用; 实验建立了较优的酶转化反应方式, 在加酶量为每克天冬氨酸3 000 U时, 以分批加入固体底物L-天冬氨酸的形式, 使100 g/L底物转化率达到97.8%。【结论】重组L-天冬氨酸α-脱羧酶在大肠杆菌中获得高效表达, 研究了酶转化生产β-丙氨酸的影响因素, 为其工业应用奠定了基础。  相似文献   

7.
【目的】实现单核增生李斯特菌(Listeria monocytogenes)和杰氏棒杆菌(Corynebacterium jeikeium)L-天冬氨酸α-脱羧酶基因在Escherichia coli中异源表达,纯化重组蛋白并对其进行酶学性质分析。【方法】依照E.coli的密码子偏好性优化来源于L.monocytotogens和C.jeikeium的pan D基因序列。人工合成后以此构建表达载体pET28a(+)-pan D_(Lm)和p ET28a(+)-pan D_(Cj),转化E.coli BL21(DE3),实现panD_(Lm)和panD_(Cj)基因的异源表达。利用亲和层析纯化获得携带组氨酸标签的纯酶后进行酶学性质研究,并考察底物对酶反应的影响。【结果】重组菌蛋白电泳分析结果表明,重组酶panD_(Lm)和panD_(Cj)均有自加工功能,裂解后形成了α亚基和β亚基。重组酶比酶活分别为8.9 U/mg和11.8 U/mg。两种酶的最适反应温度均为60°C,最适p H分别为7.0和6.0,它们都在30-50°C,酸性条件下较稳定。与目前研究最多的谷氨酸棒杆菌(Corynebacterium glutamicum)来源的Pan DC.g相比,Pan DL.m受底物天冬氨酸的抑制作用较小。【结论】panD_(Lm)和panD_(Cj)可在高温酸性条件下特异性转化L-天冬氨酸生成β-丙氨酸,其中panD_(Lm)受底物的抑制作用较小,具有一定的工业应用潜力。  相似文献   

8.
通过PCR技术从粘质沙雷氏菌H3010基因组DNA中扩增出该D-乳酸脱氢酶基因,连接至pET-28a(+)表达载体,转入大肠杆菌BL21(DE3)中进行了重组表达,优化了酶纯化的条件,并对其酶学性质进行初步研究。结果表明,获得的该酶编码基因全长993bp,编码330个氨基酸,大小为37kDa。经优化表达及纯化条件后重组酶纯度可达90%。酶学性质研究发现,该重组酶最适反应温度为60℃,最适酶促反应pH为7.5(O.2mol/L磷酸盐缓冲液),37℃下测得对底物丙酮酸的动力学参数Km=3.39mmol/L,Vmax=6.87mmol/(mg·min),对辅酶NADH的动力学参数Km=1.43mmol/L,Vmax=1.61mmo]/(mg·min)。为酶法生产D-乳酸及利用代谢工程构建产D-乳酸的基因工程菌打下基础。  相似文献   

9.
和斐  杨套伟  徐美娟  张显  饶志明  唐蕾 《微生物学报》2016,56(10):1595-1605
【目的】构建Bacillus subtilis来源的γ-谷氨酰转肽酶蛋白(GGT)的Corynebacterium glutamicum SYPA5-5表达系统,验证该蛋白信号肽片段在宿主表达体系中的作用,并将该体系应用于高效合成茶氨酸的研究。【方法】将该ggt基因和切除信号肽的片段基因(?sp ggt)在C.glutamicum SYPA5-5中克隆表达。以C.glutamicum SYPA5-5高产L-精氨酸培养基为基础进行重组菌产酶优化。最优转化条件为:L-谷氨酰胺∶乙胺为1∶3,酶量为0.06 U/mL。采用底物流加策略高产L-茶氨酸,40 mL的转化体系包含:终浓度为0.9 U/mL的GGT,pH 10,37℃,从0 h开始每隔2 h补加20 mmol/L的L-谷氨酰胺,60 mmol/L的乙胺。【结果】C.glutamicum SYPA5-5/pXMJ19-ggt发酵上清液中GGT酶活达到(4.69±0.34)U/mL,C.glutamicum SYPA5-5/pXMJ19-?sp ggt只检测到胞内酶活(0.99±0.17)U/mL,说明利用B.subtilis来源的信号肽可以实现GGT在C.glutamicum体系中分泌表达。最适产酶培养基条件为:葡萄糖浓度为10%;IPTG最适添加时间为0 h。批次流加在12 h时达到最大茶氨酸产量104.36 mmol/L,转化率为86.9%。【讨论】本文首次实现B.subtilis来源的γ-谷氨酰转肽酶基因(ggt)在C.glutamicum SYPA5-5中分泌表达,通过分批流加底物获得目前报道的利用重组C.glutamicum合成L-茶氨酸的最高产量。  相似文献   

10.
【目的】嘌呤核苷磷酸化酶(PNP,EC.2.4.2.1)在酶法合成核苷类药物及中间体中具有广泛应用。本文研究的目标是,获得极地嗜冷菌假交替单胞菌Pseudoa lteromonas sp.XM2107嘌呤核苷磷酸化酶编码基因,并对该酶酶学性质进行研究,以考察该酶在核苷类中间体及药物合成中的潜在应用价值。【方法】利用同源序列PCR技术从Pseudoa lteromonas sp.XM2107基因组DNA中扩增出其编码嘌呤核苷磷酸化酶基因,测序获得编码序列。将该基因在大肠杆菌BL21(DE3)中进行重组表达以及金属螯合层析纯化,对其酶学性质进行初步研究。【结果】经过测序获得了该酶编码基因序列,全长702 bp,共编码233个氨基酸,大小为25 kDa,Genbank登录号为GQ475485。酶学性质研究发现,该重组酶最适反应温度为50℃,最适酶促反应pH为7.6(25 mmol/L磷酸盐缓冲液),最适酶促反应底物为肌苷(Km值0.389 mmol/L,37℃),且对底物腺苷和鸟苷也有磷酸解活性,在普通温度下具有较高催化活性和较好热稳定性。【结论】来源于Pseudoa lteromonas sp.XM2107的嘌呤核苷磷酸化酶在普通温度条件下具有较高的催化活性及良好热稳定性性质,在核苷类中间体和药物合成中具有较广泛的应用价值。  相似文献   

11.
L Yin  X Hu  D Xu  J Ning  J Chen  X Wang 《Metabolic engineering》2012,14(5):542-550
Threonine dehydratase and acetohydroxy acid synthase are critical enzymes in the l-isoleucine biosynthesis pathway of Corynebacterium glutamicum, but their activities are usually feedback-inhibited. In this study, we characterized a feedback-resistant threonine dehydratase and an acetohydroxy acid synthase from an l-isoleucine producing strain C. glutamicum JHI3-156. Sequence analysis showed that there was only a single amino acid substitution (Phe383Val) in the feedback-resistant threonine dehydratase, and there were three mutated amino acids (Pro176Ser, Asp426Glu, and Leu575Trp) in the big subunit of feedback-resistant acetohydroxy acid synthase. The mutated threonine dehydratase over-expressed in E. coli not only showed completely resistance to l-isoleucine inhibition, but also showed enhanced activity. The mutated acetohydroxy acid synthase over-expressed in E. coli showed more resistance to l-isoleucine inhibition than the wild type. Over-expression of the feedback-resistant threonine dehydratase or acetohydroxy acid synthase in C. glutamicum JHI3-156 led to increase of l-isoleucine production; co-expression of them in C. glutamicum JHI3-156 led to 131.7% increase in flask cultivation, and could produce 30.7g/L l-isoleucine in 72-h fed-batch fermentation. These results would be useful to enhance l-isoleucine production in C. glutamicum.  相似文献   

12.
The catabolic or biodegradative threonine dehydratase (E.C. 4.2.1. 16) of Escherichia coli is an isoleucine feedback-resistant enzyme that catalyzes the degradation of threonine to alpha-ketobutyrate, the first reaction of the isoleucine pathway. We cloned and expressed this enzyme in Corynebacterium glutamicum. We found that while the native threonine dehydratase of C. glutamicum was totally inhibited by 15 mM isoleucine, the heterologous catabolic threonine dehydratase expressed in the same strain was much less sensitive to isoleucine; i.e., it retained 60% of its original activity even in the presence of 200 mM isoleucine. To determine whether expressing the catabolic threonine dehydratase (encoded by the tdcB gene) provided any benefit for isoleucine production compared to the native enzyme (encoded by the ilvA gene), fermentations were performed with the wild-type strain, an ilvA-overexpressing strain, and a tdcB-expressing strain. By expressing the heterologous catabolic threonine dehydratase in C. glutamicum, we were able to increase the production of isoleucine 50-fold, whereas overexpression of the native threonine dehydratase resulted in only a fourfold increase in isoleucine production. Carbon balance data showed that when just one enzyme, the catabolic threonine dehydratase, was overexpressed, 70% of the carbon available for the lysine pathway was redirected into the isoleucine pathway.  相似文献   

13.
C Cordes  B M?ckel  L Eggeling  H Sahm 《Gene》1992,112(1):113-116
Corynebacterium glutamicum is an industrially important bacterium for the manufacture of amino acids. We constructed genomic libraries of this Gram+ bacterium and screened for clones carrying isoleucine biosynthesis genes (ilv) by complementation of Escherichia coli mutants. Clones complementing ilvA, ilvB, and ilvC were isolated. As based on the functional analysis of the corresponding plasmids in C. glutamicum, the DNA fragments isolated encode threonine dehydratase, acetohydroxy acid synthase, and isomeroreductase, catalyzing three subsequent reactions in Ile synthesis. Subcloning and transposon mutagenesis revealed that ilvB and ilvC reside on a 7-kb chromosomal fragment and that these genes are transcribed in the same direction. A shuttle vector was constructed to allow exonuclease treatment and assay subsets of plasmids for gene expression in the original C. glutamicum background. These constructs and their enzyme activity determinations revealed that despite close linkage ilvC is expressed independently from ilvB. Using Southern blots, a 15-kb fragment of chromosomal DNA carrying the ilvBC cluster was characterized. This fragment does not contain ilvA, demonstrating the entirely different organization of the isoleucine biosynthesis genes in C. glutamicum from that in enterobacteria.  相似文献   

14.
A library of EcoRI DNA fragments from Brevibacterium flavum was constructed using plasmid vector. The genes complementing ThrA2 and ThrB mutations in Escherichia coli were identified in the library. The gene thrA2 of B. flavum codes for mutant enzyme homoserine dehydrogenase insensitive to inhibition by threonine. The genes thrA2 and thrB are localized wihtin the EcoRI fragment 4.1 kb long and are expressed under the control of their own promoters in E. coli cells. Structural and functional analysis of cloned C. glutamicum gene ilvA was performed. The gene of C. glutamicum complemented ilvA mutation in E. coli and appeared to be localized within the EcoRI--SacI DNA fragment 1.6 kb in size. Using E. coli minicells we have demonstrated that the gene ilvA of C. glutamicum controls the synthesis of polypeptide of relative molecular mass 50 kD.  相似文献   

15.
Carbon destined for lysine synthesis in Corynebacterium glutamicum ATCC 21799 can be diverted toward threonine by overexpression of genes encoding a feedback-insensitive homoserine dehydrogenase (hom(dr)) and homoserine kinase (thrB). We studied the effects of introducing two different threonine dehydratase genes into this threonine-producing system to gauge their effects on isoleucine production. Co-expression of hom(dr), thrB, and ilvA, which encodes a native threonine dehydratase, caused isoleucine to accumulate to a final concentration of 2.2+/-0.2 g l(-1), five-fold more than accumulates in the wild-type strain, and approximately twice as much as accumulates in the strain expressing only hom(dr) and thrB. Comparing these data with previous results, we found that overexpression of the three genes, hom(dr), thrB, and ilvA, in C. glutamicum ATCC 21799 is no better in terms of isoleucine production than the expression of a single gene, tdcB, encoding a catabolic threonine dehydratase from Escherichia coli. Co-expression of hom(dr), thrB, and tdcB, however, caused the concentration of isoleucine to increase 20-fold compared to the wild-type strain, about four times more than the corresponding ilvA-expressing strain. In this system, the apparent yield of isoleucine production was multiplied by a factor of two [2.1 mmol (g dry cell weight)(-1)]. While the balance of excreted metabolites showed that the carbon flow in this strain was completely redirected from the lysine pathway into the isoleucine pathway, it also showed that more pyruvate was diverted into amino acid synthesis.  相似文献   

16.
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   

17.
S. Morbach  H. Sahm    L. Eggeling 《Applied microbiology》1995,61(12):4315-4320
The biosynthesis of l-isoleucine proceeds via a highly regulated reaction sequence connected with l-lysine and l-threonine synthesis. Using defined genetic Corynebacterium glutamicum strains characterized by different fluxes through the homoserine dehydrogenase reaction, we analyzed the influence of four different ilvA alleles (encoding threonine dehydratase) in vectors with two different copy numbers on the total flux towards l-isoleucine. For this purpose, 18 different strains were constructed and analyzed. The result was that unlike ilvA in vectors with low copy numbers, ilvA in high-copy-number vectors increased the final l-isoleucine yield by about 20%. An additional 40% increase in l-isoleucine yield was obtained by the use of ilvA alleles encoding feedback-resistant threonine dehydratases. The strain with the highest yield was characterized by three hom(Fbr) copies encoding feedback-resistant homoserine dehydrogenase and ilvA(Fbr) encoding feedback-resistant threonine dehydratase on a multicopy plasmid. It accumulated 96 mM l-isoleucine, without any l-threonine as a by-product. The highest specific productivity was 0.052 g of l-isoleucine per g of biomass per h. This comparative flux analysis of isogenic strains showed that high levels of l-isoleucine formation from glucose can be achieved by the appropriate balance of homoserine dehydrogenase and threonine dehydratase activities in a strain background with feedback-resistant aspartate kinase. However, still-unknown limitations are present within the entire reaction sequence.  相似文献   

18.
B Mckel  L Eggeling    H Sahm 《Journal of bacteriology》1992,174(24):8065-8072
Threonine dehydratase activity is an important element in the flux control of isoleucine biosynthesis. The enzyme of Corynebacterium glutamicum demonstrates a marked sigmoidal dependence of initial velocity on the threonine concentration, a dependence that is consistent with substrate-promoted conversion of the enzyme from a low-activity to a high-activity conformation. In the presence of the negative allosteric effector isoleucine, the K0.5 increased from 21 to 78 mM and the cooperativity, as expressed by the Hill coefficient increased from 2.4 to 3.7. Valine promoted opposite effects: the K0.5 was reduced to 12 mM, and the enzyme exhibited almost no cooperativity. Sequence determination of the C. glutamicum gene for this enzyme revealed an open reading frame coding for a polypeptide of 436 amino acids. From this information and the molecular weight determination of the native enzyme, it follows that the dehydratase is a tetramer with a total mass of 186,396 daltons. Comparison of the deduced polypeptide sequence with the sequences of known threonine dehydratases revealed surprising differences from the C. glutamicum enzyme in the carboxy-terminal portion. This portion is greatly reduced in size, and a large gap of 95 amino acids must be introduced to achieve homology. Therefore, the C. glutamicum enzyme must be considered a small variant of threonine dehydratase that is typically controlled by isoleucine and valine but has an altered structure reflecting a topological difference in the portion of the protein most likely to be important for allosteric regulation.  相似文献   

19.
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