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1.
目的通过对香菇C91-3转录组进行筛选,并克隆表达含RCC1(染色体浓缩调控蛋白)和ANK(锚蛋白)结构域的Unigene8290基因,研究其抗肿瘤活性。方法从香菇C91-3菌丝体中提取总RNA,反转录合成cDNA,并利用Rapid Amplification of cDNA Ends(RACE)技术获得基因全长。生物信息学分析其结构域。设计特有引物,采用PCR技术扩增该结构域,将其克隆产物与pET-32a(+)载体连接,热转化至E.coil Rosetta-gami(DE3)中诱导表达,纯化、复性后,通过MTT法研究其抗肿瘤活性。结果生物信息学显示Unigene8290基因具有RCC1和ANK结构域,琼脂糖凝胶电泳与测序结果显示Unigene8290基因的结构域片段与pET-32a(+)载体重组成功,SDS-PAGE与Western blot结果显示Unigene8290蛋白成功表达,MTT结果显示该重组融合蛋白对HepG2细胞生长具有明显的抑制作用,并且其抑制作用存在一定的时间和浓度依赖性。结论成功诱导Unigene8290的RCC1和ANK结构域蛋白表达,并初步鉴定其具有抑制HepG2肿瘤细胞增殖活性的功能。  相似文献   

2.
目的:克隆人赖氨酸乙酰基转移酶7(KAT7)的2个功能结构域基因,获得其原核表达产物,并纯化蛋白。方法:采用PCR技术从人乳腺文库中扩增人KAT7基因的2个功能结构域(1-330aa)和(331-611aa)编码片段,将其克隆到p ET28a载体中,在大肠杆菌Rossate中表达后,对原核表达产物进行纯化,以SDS-PAGE和Western印迹鉴定表达与纯化产物。结果:从人乳腺文库中分别扩增获得约990和840 bp的DNA片段,并克隆至p ET28a载体,测序结果表明与目的序列完全一致;在大肠杆菌Rossate中诱导表达出相对分子质量分别约为42 000和36 000的目的蛋白,经纯化后获得了纯度较高的重组蛋白KAT7(1-330aa)和(331-611aa)。结论:获得了重组蛋白KAT7(1-330aa)和(331-611aa),为后续研究KAT7与肿瘤调控奠定了实验基础。  相似文献   

3.
对家蝇溶菌酶(Musca domestica lysozyme,MDLZM2)基因进行克隆、序列分析,构建原核表达载体并在大肠杆菌中表达。从Gen Bank家蝇基因组中筛选获得MDLZM2基因。以该基因的序列设计引物,进行PCR扩增,测序分析获得该基因完整编码序列。运用生物信息学方法对该基因及其编码蛋白的基本理化性质、信号肽、二级结构、三级结构和保守结构域等方面进行预测和分析。构建p EASY-E1-MDLZM2重组质粒,转化到大肠杆菌BL21(DE3)p Lys S Chemically Competent Cell中进行诱导表达及纯化。结果表明MDLZM2基因ORF全长552 bp,编码183个氨基酸,理论分子量21.2 k Da;等电点为6.13,具有Lysozyme家族的蛋白保守结构域。成功构建重组原核表达p EASY-E1-MDLZM2并诱导表达、纯化重组蛋白,为进一步研究该蛋白的生物学及免疫学活性奠定了基础。  相似文献   

4.
甲羟戊酸激酶是甲羟戊酸途径的关键酶。根据滇龙胆转录组甲羟戊酸激酶基因Gr MK序列,设计一对基因特异性引物克隆该基因,并进行序列分析;构建原核表达载体p GEX-4T-1-Gr MK,转入大肠杆菌Rosetta(DE3),重组蛋白在37℃、1.0 mmol/L IPTG诱导下成功表达。生物信息学分析结果表明,Gr MK蛋白为甲羟戊酸激酶家族成员,具有MK蛋白保守结构域:乳糖激酶/高丝氨酸激酶/甲羟戊酸激酶/磷酸甲羟戊酸激酶(GHMP kinase)N端结构域、C端结构域和ATP结合结构域;Gr MK与长春花Cr MK亲缘关系最近.原核表达结果表明,融合蛋白相对分子质量与推断大小一致。组织特异性表达分析结果表明Gr MK基因主要在根中表达.这些结果为Gr MK蛋白结构和功能的研究奠定基础。  相似文献   

5.
为了探讨LRG1基因结构与功能,对该基因进行克隆并构建到原核表达载体上,并对其进行表达及生物信息学分析。用Trizol法提取人肝癌HepG2细胞总RNA后,PCR扩增得到LRG1片段,经鉴定后将目的基因与原核表达载体pET28a连接,经诱导表达获得His-LRG1蛋白。LRG1基因cDNA片段大小为1 044 bp,编码347个氨基酸;成功构建pET28a原核表达载体,经多次不同条件诱导后,得到大小约40 kD目的蛋白;利用软件对LRG1蛋白的一级、二级结构进行了预测,分析总结得LRG1基因编码的蛋白是一个不稳定且具有亲水性的蛋白,可与多种信号开关相互作用。LRG1属于高度保守的富亮氨酸重复家族成员,其原核表达载体不易诱导产生大量目的蛋白,克隆表达该基因有利于验证其结构与功能关系。  相似文献   

6.
目的:构建沙门菌毒力基因spvB的原核表达载体,诱导表达纯化SpvB蛋白并以其为抗原免疫小鼠,制备多克隆抗体。方法:利用生物信息学软件对SpvB进行分析,选取抗原性较高、易表达的氨基酸序列作为克隆序列,以携带spvB基因的鼠伤寒沙门菌为模板,PCR扩增目的片段后与原核表达载体pET28a(+)连接;将质粒pET28a-SpvB转化大肠埃希菌BL21(DE3)后诱导表达并纯化。目的蛋白免疫小鼠,制备抗SpvB多克隆抗体,Western blot检测抗体特异性。结果:成功构建spvB原核表达载体,经IPTG诱导结果显示,重组蛋白表达且主要存在于包涵体中,将纯化后的蛋白免疫小鼠Western blot检测血清中抗体与SpvB特异性结合。结论:获得具有免疫原性的SpvB蛋白及其多克隆抗体,为进一步研究该基因的功能奠定基础。  相似文献   

7.
通过对香菇C91-3转录本Unigene 24277基因的生物信息学分析,克隆表达含RCC1结构域的Unigene 24277基因,并研究其抗肿瘤活性。从香菇C91-3菌丝体中提取总RNA,反转录合成cDNA,并利用Rapid Amplification of cDNA Ends(RACE)技术获得基因全长。NCBI数据库分析提示其含有RCC1结构域。PCR扩增RCC1结构域,将其克隆产物与pET-32a(+)载体连接,热转化至E.coil Rosetta-gami(DE3)中诱导表达,纯化、复性后,通过MTT法研究其抗肿瘤活性。结果显示原核表达载体构建成功,重组蛋白成功诱导表达,并初步证明了重组蛋白具有抑制肿瘤细胞增殖活性的功能,为后续抗肿瘤机制的探究奠定了基础。  相似文献   

8.
利用RT-PCR技术从处于快速伸长发育时期的棉花纤维组织中克隆得到Spiral1-Like(SP1L5)基因(GhSP1L5),其开放读码框为315 bp,编码105个氨基酸的蛋白质,生物信息学分析表明,GhSP1L5蛋白N端和C端较为保守,并含有SCOP结构域,是典型的微管结合蛋白。进化树分析表明该基因与SP1L5家族基因的亲缘关系较近。构建原核表达载体pET28a-GhSP1L5,转化大肠杆菌BL21(DE3)并进行体外诱导表达,通过SDS-PAGE检测目的蛋白的表达,获得分子质量约为12 kD的重组蛋白。QRTPCR结果分析表明GhSP1L5基因在开花后15和20 dpa的纤维组织中表达量较高,在棉纤维发育的其他时期及根、茎、叶组织中表达量较低。  相似文献   

9.
ATF4是含有bZIP结构域的ATF/CREB转录因子家族成员,对胚胎的发育以及细胞的增殖、分化有重要的调节作用。制备ATF4的多克隆抗体对于研究其在斑马鱼心脏发育过程中的作用有重要的意义。研究首先通过生物信息学方法,选择ATF4基因中特异性强、具亲水性的一段核苷酸序列(1017bp),通过PCR扩增,将片段重组到原核表达载体pET-28a,然后转化入Rosetta菌株中。经测序鉴定正确后,用IPTG诱导表达融合蛋白,以该融合蛋白免疫小鼠,获得ATF4多克隆抗鼠血清。对该多抗血清抗体进行验证,具有很好特异性和较高效价,可以用作Western—blotting、免疫印迹等试验分析。  相似文献   

10.
[目的]表达、纯化小鼠Prune蛋白DHH结构域(m-Prune D),并制备多克隆抗体。[方法]生物信息学方法分析m-Prune D氨基酸序列;PCR扩增目的基因m-Prune D,克隆入原核表达载体p ET28a(+);IPTG诱导目的基因表达,SDS-PAGE和Western Blot鉴定蛋白表达,亲和层析法纯化蛋白;用纯化的重组m-Prune D免疫小鼠制备多克隆抗体;Western Blot检测多克隆抗体特异性。[结果]PCR成功扩增m-Prune D基因,双酶切及测序结果表明成功构建m-Prune D原核表达载体,SDS-PAGE和Western Blot鉴定表明成功表达约25 k Da的重组蛋白。纯化蛋白免疫小鼠后抗体滴度最高可达1∶25 600,所制备的多克隆抗体可特异性识别原核和真核细胞中DHH结构域蛋白。[结论]在E.coli中成功表达小鼠Prune蛋白DHH结构域,制备了多克隆抗体血清,可用于Prune蛋白生物学功能的进一步研究。  相似文献   

11.
One approach to understanding the Reactive Oxygen Species (ROS)-scavenging systems in plant stress tolerance is to manipulate the levels of antioxidant enzyme activities. In this study, we expressed in the chloroplast three such enzymes: dehydroascorbate reductase (DHAR), glutathione-S-transferase (GST) and glutathione reductase (GR). Homoplasmic chloroplast transformants containing either DHAR or GST, or a combination of DHAR:GR and GST:GR were generated and confirmed by molecular analysis. They exhibited the predicted changes in enzyme activities, and levels or redox state of ascorbate and glutathione. Progeny of these plants were then subjected to environmental stresses including methyl viologen (MV)-induced oxidative stress, salt, cold and heavy metal stresses. Overexpression of these different enzymes enhanced salt and cold tolerance. The simultaneous expression of DHAR:GR and GST:GR conferred MV tolerance while expression of either transgene on its own didn't. This study provides evidence that increasing part of the antioxidant pathway within the chloroplast enhances the plant's ability to tolerate abiotic stress.  相似文献   

12.
高山松及其亲本种油松和云南松DHAR基因的功能分化   总被引:1,自引:0,他引:1  
高山松(Pinus densata)是油松(P. tabulaeformis)与云南松(P. yunnanensis)自然杂交产生的同倍性杂种, 分布于青藏高原东南缘, 占据了油松和云南松两个亲本种都不能正常生长的高海拔地带。为了揭示高山松、油松和云南松脱氢抗坏血酸还原酶(DHAR)基因的组成和功能分化, 分别从高山松、油松和云南松中克隆到2类DHAR基因(DHAR1与DHAR2)。组织表达模式分析表明, 这6个基因在根、韧皮部、叶和芽中均有表达; 通过系统发育分析发现, 高山松在物种形成过程中保留了油松的DHAR1拷贝以及云南松的DHAR2拷贝; 酶学性质分析则表明, 高山松与油松DHAR1蛋白对底物具有相似的催化活性、催化效率、最适pH和热力学稳定性, 但其催化活性比云南松DHAR1蛋白高约300倍。高山松DHAR2蛋白对底物的催化活性和热力学稳定性均高于油松DHAR2蛋白。高山松DHAR基因在生化功能上显示出优于或类似亲本DHAR, 这种优势功能的选择与杂种独特的生态适应性可能有重要的相关性。  相似文献   

13.
Plant dehydroascorbate reductase (DHAR), which re-reduces oxidized ascorbate to maintain an appropriate level of ascorbate, is very important, but no gene or cDNA for plant DHAR has been cloned yet. Here, we describe a cDNA for a rice glutathione-dependent DHAR (designated DHAR1). A recombinant Dhar1p produced in Escherichia coli was functional. The expression sequence tag database suggests that Dhar1p homologs exist in various plants. Furthermore, the rice Dhar1p has a low similarity to rat DHAR, although the rice enzyme has a considerably higher specific activity than the mammalian one. The mRNA level of DHAR1, the protein level of Dhar1p and the DHAR activity in rice seedlings were elevated by high temperature, suggesting the protection role of DHAR at high temperature.  相似文献   

14.
日本血吸虫中国大陆株28kDa GST基因在大肠杆菌中的表达   总被引:11,自引:0,他引:11  
田锷  杨冠珍 《动物学报》1996,42(4):421-427
在大肠杆菌TB1中表达含日本血吸虫中国大陆株28kDa抗原基因的重组质粒,表达产物是融合蛋白,分子量来33kDa。采用谷胱甘肽琼脂糖亲和层析柱纯化表达产物。2,4-二硝基氯苯/谷胱甘肽分光光度测定法和琼脂糖-淀粉凝胶电泳显示重组抗原具有较高的谷胱甘肽S-转移酶活力。  相似文献   

15.
棉铃虫组织蛋白酶B多克隆抗体制备及鉴定   总被引:3,自引:0,他引:3  
介绍了用重组的棉铃虫组织蛋白酶B(HCB)制备兔多克隆抗体的方法。用已经克隆得到的pGEX 4T 1 HCB重组质粒转化的大肠杆菌 (Escherichiacoli)BL2 1菌株进行诱导表达 ,获得融合表达的包涵体产物。经过变性、复性等方法处理包涵体 ,获得可溶性融合蛋白。用凝血酶裂解融合蛋白 ,再经SDS -聚丙烯酰胺凝胶电泳分离纯化目的蛋白HCB ,用做抗原免疫家兔。产生的抗血清经硫酸铵沉淀 ,最后得到了抗棉铃虫组织蛋白酶B的多克隆抗体。用间接酶联免疫吸附测定法测得该抗体对重组表达的组织蛋白酶B和棉铃虫体内的组织蛋白酶B的效价分别为 1∶5 1 2 0 0和 1∶2 5 60 0。通过免疫印迹检测证明此抗体不仅可以识别重组表达的棉铃虫组织蛋白B ,而且可以识别棉铃虫卵巢匀浆液中的棉铃虫组织蛋白酶B。  相似文献   

16.
将构建好的可表达GST融合蛋白的重组病毒AcMNPV-OCC^--GST-6xHis-Etp28感染Sf9细胞,一定时间后取感染了病毒的细胞裂解物上清液进行SDS-PAGE分析,结果显示53kDa的融合蛋白(GST-6xHis-Etp28)呈不溶状态。在原有裂解液的基础上,加固体十二烷基肌氨酸钠致终浓度1.5%,并将Triton X-100的比例由1%提高到2%。SDS-PAGE结果显示至少有1/  相似文献   

17.
Antioxidant enzymes (CAT, catalase; GPx, selenium nondependent glutathione peroxidase; GST, glutathione-S-transferase; GR, glutathione reductase; DHAR, dehydroascorbate reductase) were determined in the mitochondria of diapausing and non-diapausing larvae and pupae of both diapausing and non-diapausing larvae of the European corn borer (Ostrinia nubilalis, Hubn., Lepidoptera: Pyralidae). CAT, GST, and DHAR activity in mitochondria of diapausing larvae were reduced compared to non-diapausing larvae. Pupae of diapaused-larvae possessed lower GST, but higher DHAR activities compared to pupae of non-diapaused individuals. Comparison between larvae and pupae revealed lower GPx activity in the mitochondria of pupae. CAT activity in the mitochondria of pupae was higher compared to diapausing larvae, but lower than in non-diapausing ones. Correlation and canonical discriminant analyses revealed different antioxidant enzyme compositions for a particular stage and developmental pattern. Our results show that antioxidant enzymes have a similar role in the regulation of energetics in mitochondria as that in diapause and metamorphosis.  相似文献   

18.
A 28-kDa glutathione S-transferase (Cs28GST) was purified from a Clonorchis sinensis cytosolic fraction through anion-exchange and glutathione-affinity column chromatographies. A monoclonal antibody raised against Cs28GST reacted specifically to the C. sinensis antigen among trematode proteins. A putative peptide of 212 amino residues deduced from a cDNA clone appeared homologous with 28-kDa GST of trematodes, and its secondary structural elements predicted a GSH-binding site. Recombinant Cs28GST showed GST enzyme activity with CDNB substrate and was sensitive to the model inhibitors. The recombinant Cs28GST was antigenically indistinguishable from the native form and was recognized specifically by C. sinensis-infected human sera. The Cs28GST was localized in the tegument and underlying mesenchymal tissues. It is suggested that Cs28GST may play significant physiological roles against bioreactive molecules and be a useful reagent for serodiagnosis of clonorchiasis.  相似文献   

19.
Dehydroascorbate reductase (DHAR) is a key enzyme in the ascorbate–glutathione cycle that maintains reduced pools of ascorbic acid and serves as an important antioxidant. In this study, to investigate functional divergence of plant DHAR family and catalytic characteristics of the glutathione binding site (G-site) residues of DHAR proteins, we cloned three DHAR genes (PtoDHAR1/2/3) from Populus tomentosa and predicted the G-site residues. PtoDHAR1 protein was localized in chloroplast, while PtoDHAR2/3 proteins showed cytosolic localizations. Three DHAR proteins showed different enzymatic activities, apparent kinetic characteristics, optimum T m and pH profiles, indicating their functional divergence. Cys20, Lys8, Pro61, Asp72 and Ser73 of PtoDHAR2 were predicted as G-site residues based on their N-terminal amino acid sequence identity and the available crystal structures of glutathione S-transferases. The biochemical functions of these residues are examined in this study through site-directed mutagenesis. The aforementioned five residues are critical components of active sites that contribute to the enzyme’s catalytic activity. Cys20, Pro61 and Asp72 of PtoDHAR2 are also responsible for maintaining proper protein structure. This study provides new insights into the functional divergence of the plant DHAR family and biochemical properties of the G-site residues in plant DHAR proteins.  相似文献   

20.
Dehydroascorbate reductase (DHAR) reduces dehydroascorbate (DHA) to ascorbate with glutathione (GSH) as the electron donor. We analyzed the reaction mechanism of spinach chloroplast DHAR, which had a much higher reaction specificity for DHA than animal enzymes, using a recombinant enzyme expressed in Escherichia coli. Kinetic analysis suggested that the reaction proceeded by a bi-uni-uni-uni-ping-pong mechanism, in which binding of DHA to the free, reduced form of the enzyme was followed by binding of GSH. The Km value for DHA and the summed Km value for GSH were determined to be 53 +/- 12 micro m and 2.2 +/- 1.0 mm, respectively, with a turnover rate of 490 +/- 40 s-1. Incubation of 10 microm DHAR with 1 mm DHA and 10 microm GSH resulted in stable binding of GSH to the enzyme. Bound GSH was released upon reduction of the GSH-enzyme adduct by 2-mercaptoethanol, suggesting that the adduct is a reaction intermediate. Site-directed mutagenesis indicated that C23 in DHAR is indispensable for the reduction of DHA. The mechanism of catalysis of spinach chloroplast DHAR is proposed.  相似文献   

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