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1.
扩展青霉脂肪酶K56R叠加突变对热稳定性的影响   总被引:1,自引:0,他引:1  
目的:扩展青霉脂肪酶随机突变体ep8是一株热稳定性比野生型有所提高的突变体.获得热稳定性提高的优良菌株.方法:在ep8的基础上利用重叠延伸PCR构建叠加突变重组质粒pPIC3.5K-ep8一K56R,将该质粒电转毕赤酵母(Pichia paaoris)GS115进行异源表达.结果:该叠加突变脂肪酶在毕赤酵母中获得了活性表达.15%SDS-PACE结果分析表明突变脂肪酶PEL-ep8-K56R-GS分子量与野生型PEL-GS一致,约为28kDa.叠加突变脂肪酶在37℃时酶活为852U/mL、野生型为760u/mL、随机突变体为824u/mL,叠加突变体酶活相比野生型提高了21.1%,相比随机突变体提高了3.4%.热稳定性分析数据表明叠加突变脂肪酶Tm值为40.1℃、野生型为38.7℃、随机突变体为39.9℃,Tm值相比野生型提高了1.4℃,相比随机突变体提高了0.2℃.  相似文献   

2.
目的构建大鼠GluR2基因启动子控制的萤火虫荧光素酶表达载体,并检测其在神经元中的表达。方法采用PCR方法获得GluR2基因启动子区目的片段(-298~+283),双酶切后插入到pGL3-Basic载体中构成重组表达载体,使萤火虫荧光素酶报告基因的表达受GluR2启动子控制。将构建的重组表达载体或pGL3-Basic载体分别与内参质粒pRL—CMV(表达海肾荧光素酶)共转染原代培养皮质神经元,24h后用双荧光检测试剂盒测定萤火虫荧光素酶及海肾荧光素酶活性。结果重组表达载体经双酶切及测序鉴定证明构建正确,该重组表达载体在神经元中特异性高表达萤火虫荧光素酶。结论成功构建大鼠GluR2基因启动子控制的萤火虫荧光素酶表达载体,并检测到该载体在神经元中的特异性表达。  相似文献   

3.
D92P点突变对扩展青霉碱性脂肪酶最适作用温度的改善   总被引:2,自引:0,他引:2  
利用重叠延伸PCR法对扩展青霉碱性脂肪酶(PEL)基因进行体外定点突变,并构建了含突变基因的重组质粒pPIC3.5K—lip-D92P。将该质粒在毕赤酵母GS115菌株中表达。与野生型表达产物PEL-GS相比较,突变体表达产物PELD92P—GS最适作用温度为45℃,比野生型提高了5℃;其热稳定性与野生型相当;突变体在40℃下的表达量为109U/mL,约为野生型的29%。结果分析表明,Pro替代Asp^92后,可能是由于Pro一级结构的特点,使酶结构更加稳定,在高温下更适于与底物结合。  相似文献   

4.
目的:分析丙型肝炎病毒(HCV)5′端非编码区(NCR)的结构域Ⅰ序列在其翻译启动活性中的作用。方法:以质粒pCMVN CRluc为模板,PCR扩增分别得到缺失5′端20nt和43nt的HCV 5′NCR片段,并分别替换pCMVNCRluc中的完整HCV 5′NCR,构建结构域Ⅰ缺失的HCV 5′NCR调控萤火虫荧光素酶(luc)基因表达的真核表达质粒(pCN1-d1、pCNl-d2)。以脂质体方法转染人肝癌细胞株HepG2,用双荧光素酶报告基因检测系统检测荧光素酶相对于内参考的海肾荧光素酶表达活性,同时采用RT-PCR方法检测转染后细胞中萤火虫荧光素酶基因的相对表达水平。结果:酶切和测序结果表明,各重组质粒构建成功。各重组质粒转染细胞后luc mRNA的相对表达水平与pCMVNRluc相比差异无显著性(P>0.05);pCNl-dl、pCNl-d2表达的荧光素酶活性与pCMVNCRluc差异无显著性(P>0.05)。结论:HCV 5′NCR的5′端20nt和43nt序列缺失不影响它的翻译启动活性。  相似文献   

5.
以牙鲆空通气孔同源框2基因(empty spiracles homeobox 2,emx2)为例,构建包含emx2 3'UTR区的野生型和突变型双荧光素酶重组报告表达载体,以期应用于mi RNA靶标的检测。利用Trizol法提取牙鲆成鱼精卵巢混合组织总RNA,参照已克隆出来的emx2基因c DNA序列,设计并合成emx2 3'UTR片段的引物并进行PCR扩增,将得到的基因片段和psi CHECK-2载体双酶切后,用T4 DNA Ligase酶进行连接反应,并转化入DH5α感受态细胞,筛选后得到野生型重组质粒;同时采用定点诱变法对emx2基因进行体外定点诱变并采用同样的方法形成突变型重组质粒。对野生型和突变型重组质粒进行双酶切、琼脂糖凝胶电泳鉴定及测序分析。成功克隆了emx2 3'UTR区,并将emx2 3'UTR区的mi RNA靶点序列GACTTGA突变为AGTCCAG,成功构建了野生型和突变型包含emx2 3'UTR区的mi RNA靶标检测载体。通过RT-PCR、基因重组及定点诱变技术成功构建了应用于mi RNA靶标验证的野生型和突变型双荧光素酶报告载体psi CHECK-emx2-3'UTR和psi CHECK-mutated-emx2-3'UTR。  相似文献   

6.
目的:构建能够稳定表达萤火虫荧光素酶报告基因(luc)的乳酸乳球菌(Lactococcus lactis, L.lactis)食品级表达系统,以便后续研究对目的基因进行示踪。方法:从pGL4.10质粒中PCR扩增萤火虫荧光素酶报告基因,测序,克隆至载体pNZ8149,构建pNZ8149-luc表达质粒;电击转化宿主乳酸乳球菌NZ3900,采用乳糖筛选法获得重组的乳酸乳球菌,Nisin诱导,采用微孔板发光检测仪检测荧光素酶的存在,Western Blot检测目标蛋白luc的表达。结果:PCR扩增的荧光素酶报告基因成功克隆至pNZ8149质粒,并电击转化宿主乳酸乳球菌NZ3900,得到乳酸乳球菌表达系统NZ3900/pNZ8149-luc。Nisin诱导后,检测到荧光素酶随诱导时间的延长活性逐渐增强,时间超过24 h之后荧光素酶活性逐渐下降。Western Blot检测到目标蛋白luc在胞内表达。结论:成功构建了p NZ8149-luc表达载体,并能够在乳酸乳球菌体内稳定表达。  相似文献   

7.
以牙鲆空通气孔同源框2基因(empty spiracles homeobox 2,emx2)为例,构建包含emx2 3'UTR区的野生型和突变型双荧光素酶重组报告表达载体,以期应用于mi RNA靶标的检测。利用Trizol法提取牙鲆成鱼精卵巢混合组织总RNA,参照已克隆出来的emx2基因c DNA序列,设计并合成emx2 3'UTR片段的引物并进行PCR扩增,将得到的基因片段和psi CHECK-2载体双酶切后,用T4 DNA Ligase酶进行连接反应,并转化入DH5α感受态细胞,筛选后得到野生型重组质粒;同时采用定点诱变法对emx2基因进行体外定点诱变并采用同样的方法形成突变型重组质粒。对野生型和突变型重组质粒进行双酶切、琼脂糖凝胶电泳鉴定及测序分析。成功克隆了emx2 3'UTR区,并将emx2 3'UTR区的mi RNA靶点序列GACTTGA突变为AGTCCAG,成功构建了野生型和突变型包含emx2 3'UTR区的mi RNA靶标检测载体。通过RT-PCR、基因重组及定点诱变技术成功构建了应用于mi RNA靶标验证的野生型和突变型双荧光素酶报告载体psi CHECK-emx2-3'UTR和psi CHECK-mutated-emx2-3'UTR。  相似文献   

8.
目的:根据miR-126的预测靶点构建荧光素酶报告基因重组质粒,并进行功能鉴定。方法:利用sanger数据库提供的miR-126靶序列设计引物,PCR扩增目的微小RNA(microRNAs,miRNAs)靶基因3'非编码区(three-prime untranslated regions,3'UTRs)序列,PCR产物双酶切,后连入经过同样双酶切的pGL3-control载体中,连接产物转化大肠杆菌DH5α,进行阳性克隆鉴定。同样,将候选靶基因3'UTRs突变,突变型3'UTR克隆入pGL3-control报告载体,构建野生型和突变型的报告基因重组质粒。将野生型和突变型的报告基因载体分别和化学合成的microRNA以及内参质粒共转染293TN细胞,进行双荧光素酶检测。结果:成功构建miR-126报告基因野生型和突变型重组质粒pGL3-VEGF-A-3'UTR和pGL3-VEGF-A-3'UTR,质粒测序及酶切结果完全正确。瞬时转染实验显示,过表达miR-126能直接抑制VEGF-A-3'UTRs报告基因活性。结论:miR-126对VEGF-A具有靶向调节功能。  相似文献   

9.
谷氨酸脱羧酶(Glutamate decarboxylase,GAD)是用于催化L-谷氨酸脱羧合成γ-氨基丁酸(γ-aminobutyrate,GABA)的唯一酶,提高GAD的催化活力或热稳定性,有利于GABA的高效制备和生产。以热稳定性和活性为筛选目标,通过研究短乳杆菌GAD1407三维模拟结构的拉氏图,确定不稳定氨基酸残基位点K413,采用定点突变的方法构建该位点的突变体,并测定野生型酶和突变酶的热稳定性和活力。结果表明突变酶K413A和突变酶K413I分别在热稳定性和酶活力上获得了提高,突变酶K413A在50℃的半衰期为105 min,是野生酶的2.1倍;突变酶K413I热稳定性没有明显的提高,但其酶活力却得到了有效提高,约为野生型的1.6倍。因此,通过拉氏图提供的结构信息可为利用理性设计提高GAD活性和热稳定性提供指导。  相似文献   

10.
P197E与ep8叠加突变对扩展青霉脂肪酶热稳定性的影响   总被引:1,自引:0,他引:1  
为提高脂肪酶的热稳定性,作者利用重叠延伸PCR对扩展青霉脂肪酶(PEL)基因进行了体外定点突变,构建了P197E(即将第197位的脯氨酸突变为谷氨酸)与随机突变体ep8叠加突变的重组质粒pPIC3.5K-ep8-P197E。将该质粒电转化至毕赤酵母Pichiapastoris GS115中,进行异源表达。与野生型酶和单点突变酶PEL-ep8的酶学性质比较,结果表明:叠加突变体PEL-ep8-P197E在40°C温育处理30min后,残余酶活分别比野生型PEL和随机突变体PEL-ep8提高了42.13%和37.3%。叠加突变体PEL-ep8-P197E的Tm值为41.51°C,比野生型酶PEL提高了2.81°C,比随机突变体脂肪酶PEL-ep8提高了2.25°C。通过对脂肪酶PEL的叠加突变,提高了该酶的热稳定性,并为结构与功能的进一步研究提供了材料。  相似文献   

11.
To improve the practical usefulness of the firefly luciferase, we performed gene chimerization between Photinus pyralis luciferase and a thermostable variant of Luciola cruciata luciferase. One chimeric luciferase showed low K(m) value for substrate ATP and similar stability to thermostable L. cruciata luciferase. We then introduced random mutations in the corresponding gene and screened for increased catalytic efficiency. Amino acid replacement of Thr219, Val239 and Val290 affected the kinetic parameters. Therefore, we combined these three mutations. One mutant, ABcT219I,V239I, showed high catalytic efficiency comparable to P. pyralis luciferase and high stability similar to thermostable L. cruciata luciferase. The pH-dependence of the bioluminescence emission spectra was also examined. In contrast to wild-type firefly luciferases characterized to date, the mutant did not show the pH-dependent red spectrum shift.  相似文献   

12.
13.
The wild type Photinus pyralis luciferase does not have any disulfide bridge. Disulfide bridges are determinant in inherent stability of protein at moderate temperatures. Meanwhile, arginin is responsible for thermostability at higher temperatures. In this study, by concomitant introduction of disulfide bridge and a surface arginin in a mutant (A296C-A326C/I232R), the contribution of disulfide bridge introduction and surface hydrophilic residue on activity and global stability of P. pyralis luciferase is investigated. In addition to the mentioned mutant; I232R, A296C-A326C and wild type luciferases are characterized. Though addition of Arg caused stability against proteolysis but in combination with disulfide bridge resulted in decreased thermal stability compared to A296C-A326C mutant. In spite of long distance of two different mutations (A296C-A326C and I232R) from each other in the three-dimensional structure, combination of their effects on the stability of luciferase was not cumulative.  相似文献   

14.
Light emission from the North American firefly Photinus pyralis, which emits yellow-green (557-nm) light, is widely believed to be the most efficient bioluminescence system known, making this luciferase an excellent tool for monitoring gene expression. We present studies on the production of a set of thermostable red- and green-emitting luciferase mutants with bioluminescent properties suitable for dual-color reporter assays, biosensor measurements with internal controls, and imaging techniques. Starting with the luciferase variant Ser284Thr, we introduced the mutations Thr214Ala, Ala215Leu, Ile232Ala, Phe295Leu, and Glu354Lys to produce a new red-emitting enzyme with a bioluminescence maximum of 610 nm, narrow emission bandwidth, favorable kinetic properties, and excellent thermostability at 37 degrees C. By adding the same five changes to luciferase mutant Val241Ile/Gly246Ala/Phe250Ser, we produced a protein with an emission maximum of 546 nm, providing a set of thermostable enzymes whose bioluminescence maxima were separated by 64 nm. Model studies established that the luciferases could be detected at the attomole level and six orders of magnitude higher. In microplate luminometer format, mixtures containing 1.0 fmol total luciferase were quantified from measurements of simultaneously emitted red and green light. The results presented here provide evidence that it is feasible to monitor two distinct activities at 37 degrees C with these novel thermostable proteins.  相似文献   

15.
cDNA coding for the luciferase in the firefly Photinus pyralis was cloned using pcDV1 primer and Honjo linker containing SP6 RNA polymerase promoter. This enabled conditions to be established to produce mRNA, capped with m7 GpppG, in vitro and then translated to form light emitting protein. Full length recombinant luciferase produced by in vitro translation, was fully active, had the same isoelectric focusing point as the native enzyme and produced a similar, yellow emission. Removal of the coding sequence for the last 12 amino acids at the C terminus, containing the peroxisome signal peptide, by polymerase chain reaction resulted in greater than or equal to 99% loss in activity of the protein formed from mRNA in vitro. This has important implications for using this luciferase as an indicator or reporter gene in eukaryotic cells, and for identifying the active centre of the enzyme.  相似文献   

16.
Min K  Steghens J 《Biochimie》2001,83(6):523-528
During experiments aimed at understanding the time course of appearance of reaction products in the Photinus pyralis luciferase system, an expected compound with a typical nucleotide UV spectrum was isolated. According to capillary electrophoresis (CE) analysis and 1H, 31P-NMR spectra, it was unambiguously found to be ADP, either with extracted or recombinant enzymes. The ADP synthesis was demonstrated by standard UV spectrophotometric methods and CE analysis. Also, the luciferase produced AMP and ATP from ADP. This reaction was completely inhibited by Ap(5)A at 250 nM and was independent of the light emitting properties of the enzyme. The only catalytic mechanism to explain the production of ADP is an intrinsic adenylate kinase activity of luciferase. The K(m) values of the AK activity are 0.3, 0.7, 0.06 mM for AMP, ADP, and ATP respectively. The multiple enzyme activities of luciferase may be partly responsible for the complex kinetics of light emission by changing the nucleotide concentrations.  相似文献   

17.
Benzalkonium chloride (BAC), used to extract intracellular ATP, interferes with subsequent firefly luciferase-luciferin assays. There was a significant difference among wild-type luciferases with respect to BAC resistance. Luciola lateralis luciferase (LlL) was the most tolerant, followed by Luciola cruciata luciferase (LcL) and Photinus pyralis luciferase. Random mutagenesis of thermostable mutants of LcL showed that the Glu490Lys mutation contributes to improved resistance to BAC. The corresponding Glu490Lys mutation was introduced into thermostable mutants of LlL by site-directed mutagenesis. Kinetic analysis demonstrated that the resultant LlL-217L490K mutant, having both an Ala217Leu and a Glu490Lys mutation, showed the highest resistance to BAC, with an initial remaining bioluminescence intensity of 87.4% and a decay rate per minute of 29.6% in the presence of 0.1% BAC. The Glu490Lys mutation was responsible for increased resistance to inactivation but not inhibition by BAC. The LlL-217L490K had identical thermostability and pH stability to the parental thermostable mutant. From these results, it was concluded that the LlL-217L490K enzyme is advantageous for hygiene monitoring and biomass assays based on the ATP-bioluminescence methodology. This is the first report demonstrating improved resistance to BAC of the firefly luciferase enzyme.  相似文献   

18.
The cDNA of a firefly luciferase from lantern mRNA of Lampyroidea maculata has been cloned, sequenced and functionally expressed. The cDNA has an open reading frame of 1647 bp and codes for a 548-residue-long polypeptide. Noteworthy, sequence comparison as well as homology modeling showed the highest degree of similarity with H. unmunsana and L. mingrelica luciferases, suggesting a close phylogenetic relationship despite the geographical distance separation. The deduced amino acid sequence of the luciferase gene of firefly L. maculata showed 93% identity to H. unmunsana. Superposition of the three-dimensional model of L. maculata luciferase (generated by homology modeling) and three dimensional structure of Photinus pyralis luciferase revealed that the spatial arrangements of Luciferin and ATP-binding residues are very similar. Putative signature of AMPbinding domain among the various firefly species and Lampyroidea maculata was compared and a striking similarity was found. Different motifs and sites have been identified in Lampyroidea maculata by sequence analysis. Expression and purification of luciferase from Lampyroidea maculata was carried out using Ni-NTA Sepharose. Bioluminescence emission spectrum was similar to Photinus pyralis luciferase.  相似文献   

19.
Firefly luciferase from Photinus pyralis has been covalently bound to a collagen strip via an acylazide activation process. Immobilization performed in the presence of both substrates ATP and luciferin allows to increase the activity retained on the strip. The best activity exhibited by immobilized luciferase was obtained in a 0.05M Tris-acetate buffer, pH 7.75. The pH optimum and the activation energy of luciferase have been found unchanged after immobilization. In the chosen stirring conditions, no diffusional limitations of substrates appear. ATP measurements can be performed with collagen-bound luciferase in the range 1.10(-11) M-3.10(-6) M. It was possible to store the strips at 4 degrees C in a dehydrated form; then, the bound enzyme retains 20% of its initial activity after eight months. Human blood ATP was measured with this collagen-bound luciferase and the results were found in good agreement with those obtained by soluble luciferase.  相似文献   

20.
短角窗萤属是萤科第四大属,但未见有该属物种荧光酶基因的研究报道。通过对总基因组的PCR扩增,对该属的栉角雪萤荧光酶基因进行了测序分析。基因序列长1958bp。与已知荧光酶基因进行同源性比较后推断,栉角雪萤的荧光酶基因由7个外显子和6个内含子组成,编码547个氨基酸残基;由推导的氨基酸序列进行同源性比较后发现,栉角雪萤的荧光酶基因与同一亚科中Lampyrini族和Cratomorphini族分别具有93—94%和92%相似性,而与北美萤火虫Photinus pyralis(Photinini族)的相似性较低(83%)。系统发育分析进一步表明栉角雪萤与Pyrocoelia、Lampyris、Cratomorphus和Photinus同属于萤亚科,且与前3个属的亲缘关系较近。这在一定程度上与形态(Branham&Wenzel,2003)及线粒体DNA(Lietal,2006)系统发育分析所得结果一致。  相似文献   

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