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1.
通过PCR方法从植物乳杆菌JPP2中扩增出胆盐水解酶(BSH)相关基因bsh3,利用中间克隆载体pMD19-T将其构建于表达载体pET-28b上,并转化入表达宿主菌E.coli BL21 (DE3),成功构建重组BSH的工程菌.核苷酸及推导的氨基酸序列分析表明,正确克隆出目的基因.诱导表达后,SDS-PAGE电泳结果显示出特异性蛋白质条带,其分子量约为38 kDa.此单克隆体系的构建为进一步研究BSH的功能奠定基础.  相似文献   

2.
目的:克隆小伞山羊草中新型avenin-like(类燕麦储藏蛋白)基因,揭示avenin-like基因的表达模式,并构建avenin-like基因真核胚乳特异性表达载体。方法:利用RT-PCR方法揭示avenin-like基因的表达模式,并用PCR方法从小伞山羊草中克隆新型avenin-like基因;将克隆的avenin-like基因插入表达载体pLRPT构建真核表达载体pLRPT-avel,并经酶切和测序鉴定。结果:avenin-like基因在胚乳中特异性表达;克隆得到新型avenin-like基因,并构建了其真核胚乳特异性表达载体。结论:新型avenin-like基因的克隆及其真核表达载体的构建,为小麦品质改良提供了研究基础。  相似文献   

3.
目的 构建人蛋白激酶Bγ(Akt3)基因编码区序列(cDNA)的真核表达载体、建立其稳定表达细胞株并观察其对MDA-MB-231细胞增殖的影响.方法 从流产胎儿脑组织中提取总RNA,采用RT-PCR方法扩增Akt3 cDNA的全长序列后克隆入pEGFP-N2质粒中,构建成Akt3基因真核表达载体,然后转染入MDA-MB-231细胞中,新霉素筛选稳定转染细胞克隆,通过MTT实验,研究转染Akt3基因前后细胞增殖的变化.结果 重组载体经酶切鉴定和测序证实目的 基因正确无误.Western印迹检测结果显示AKT3融合蛋白在MDA-MB-231细胞中表达良好,而转染空载体及未转染细胞对照中未见有此融合蛋白质条带;MTT结果显示AKT3表达上调的稳定克隆组,其增殖活性显著高于空载体稳定转染细胞组及未转染亲代细胞组,差异具有统计学意义(P<0.01),而后两者差异无统计学意义(P>0.05).结论 Akt3过表达可增强MDA-MB-231细胞的增殖.  相似文献   

4.
目的 构建人MEKK3基因编码区序列(cDNA)的真核表达载体、建立其稳定表达细胞株并观察其对肺腺癌细胞增殖的影响.方法 从A549细胞中提取总RNA,应用RT-PCR扩增MEKK3 cDNA的全长序列后克隆入pcDNA3.1/hygro(+)质粒中,构建成MEKK3基因的真核表达载体,然后转染入人肺腺癌A549细胞中,潮霉素筛选稳定转染克隆,通过MTT实验,研究转染MEKK3基因前后细胞增殖的变化.结果 重组载体经酶切鉴定和测序证实目的 基因正确无误,Western印迹检测结果显示MEKK3基因在A549细胞中具有良好的表达;荧光实时定量PCR结果表明MEKK3基因在其稳定转染的A549细胞克隆中表达上调,与空载体稳定转染及未转染细胞比较,差异具有统计学意义(P<0.05);MTT结果显示MEKK3表达上调的稳定克隆组,A549细胞的增殖活性显著增强(A570=0.876 1±0.074 5),明显高于空载体稳定转染组(A570=0.582 8±0.070 3)及未转染亲代细胞组(A570=0.584 9±0.035 2),差异具有统计学意义(P<0.01),而后两者之间差异无统计学意义(P>0.05).结论 MEKK3表达上调可导致肺腺癌细胞的增殖增强.  相似文献   

5.
实验通过对兔子基因组DNA进行PCR获得兔IFRG基因,将其克隆到pGEM-T载体,双酶切鉴定和测序结果表明成功构建了重组克隆载体pGEM-T-IFRG。通过RT-PCR分析发现IFRG基因在兔不同组织中有不同程度的表达。将重组克隆载体pGEM-T-IFRG和表达载体pET-41(c)经过EcoR1和Xho1双酶切后连接构建重组表达载体pET-41(c)-IFRG,将双酶切鉴定正确的重组表达载体转化入E.coli BL21,IPTG诱导融合蛋白的表达,SDS-PAGE结果显示兔IFRG基因在大肠杆菌中得到了良好的表达。  相似文献   

6.
目的:克隆肿瘤坏死因子相关凋亡诱导配体(TRAIL)基因片段(114~281氨基酸残基)并构建原核表达载体。方法:取健康人外周血提取总RNA,设计合成引物并引入EcoR I和Xho I酶切位点,RT-PCR扩增TRAIL基因的胞外区片段,克隆入原核表达载体pGEX-6P-1中,经双酶切、PCR及测序鉴定阳性克隆。结果:从外周血cDNA中扩增出501 bp的目的片段,测序结果证实成功构建重组质粒pGEX-6P-1/TRAIL。结论:成功构建TRAIL基因的原核表达载体pGEX-6P-1/TRAIL,为肿瘤细胞的凋亡研究提供理论依据。  相似文献   

7.
严学倩  尹郸丹  付伟  韩骅  梁英民 《生物磁学》2011,(15):2832-2835
目的:构建人IL-3基因原核表达载体pET32a-IL-3,并在大肠杆菌中诱导表达。方法:通过佛波酯(TPA)和植物球血凝素(PHA)刺激人T淋巴细胞系Jurkat细胞,增加IL-3mRNA表达水平,提取mRNA,逆转录-聚合酶链反应(RT-PCR)获得cDNA,以Jurkat细胞cDNA为模板,通过PCR方法扩增得到人IL-3基因,将其克隆入原核表达载体pET32a(+)中,将重组质粒转化入大肠杆菌宿主菌株BL21中,以异丙基硫代半乳糖苷(IPTG)诱导融合蛋白表达,并通过改变IPTG浓度,诱导时间,诱导温度等条件最终实现蛋白的可溶性表达。表达产物用SDS-PAGE检测表达情况。结果:酶切鉴定和测序结果证明成功构建了原核表达载体pET32a.IL-3。SDS-PAGE检测结果证明实现了人IL-3基因在大肠杆菌中的可溶性表达。结论:成功构建了人IL-3基因的原核表达载体并在大肠杆菌中获得了良好的表达。  相似文献   

8.
目的:构建细丝蛋白A(FLNa)基因的小干扰RNA(siRNA)表达载体,并观察其对FLNa基因表达的抑制作用。方法:利用RNA干扰(RNAi)技术设计并合成1条针对FLNa的siRNA,将其克隆到siRNA表达载体pSilencer4.1-CMV-hygro中;将重组质粒pSilencer-FLNa、pSilencer-negative(阴性对照)转染293T人胚肾细胞,通过Western印迹检测FLNa的表达;通过潮霉素筛选建立干扰FLNa表达的前列腺癌细胞。结果:PCR鉴定证明构建了FLNa基因RNAi载体;Western印迹表明构建的FLNa基因干扰载体能够有效地抑制FLNa基因的表达;建立了稳定干扰FLNa表达的前列腺癌C4-2细胞。结论:构建了FLNa基因RNAi载体,该载体能够有效地抑制FLNa基因的表达。  相似文献   

9.
目的克隆人生长抑制因子家族(inhibitor of growth famility member4,ING4)基因,构建其真核表达载体pEGFP—ING4。方法提取人胎盘总RNA,经RT—PCR扩增出ING4 cDNA,克隆至pEGFP—C2载体,构建的真核表达载体pEGFP—ING4用双酶切、基因测序进行序列鉴定;转染MCF-7细胞用荧光显微镜和免疫组化检测重组质粒的表达。结果RT—PCR产物为750bp的条带,双酶切和基因测序正确,转染可见目的蛋白融合表达。结论从人胎盘组织中成功克隆了ING4基因并构建其真核表达质粒在人MCF-7细胞中表达,为进一步研究1NG4基因的作用及抗肿瘤机制奠定了基础。  相似文献   

10.
构建HBV YIDD拉米夫定耐药株1.3倍全基因真核表达载体,为进一步探讨乙肝病毒变异株的生物学特性及筛选抗病毒药物奠定基础。参考GenBankHBV序列设计并合成一系列引物,以临床证实为拉米夫定耐药的病人HBV DNA为模板,通过PCR扩增得到HBV全基因组并克隆至pGEM—T Easy载体中,经测序证实聚合酶基因存在YIDD变异,然后以该病人的HBV全基因组为模板构建1.3倍全基因HBV—YIDD变异真核表达载体pcDNA3.1(+)-1.3HBV。通过PCR扩增,酶切及测序证明pcDNA3.1(+)-1.3HBV表达载体构建成功,该表达载体的构建为后期建立稳定表达HBV—YIDD变异的细胞模型提供材料。  相似文献   

11.
目的:建立一种高效便捷的定点突变方法,为基因表达调控以及蛋白质结构和功能的研究提供技术支撑。方法:以构建单核细胞增生李斯特菌(Listeria monocytogenes)中编码胆碱水解酶(bile salt hydrolase,BSH)的bsh基因突变启动子为例,采用一对完全互补并带有突变位点的引物扩增携带bsh基因启动子的重组质粒DNA全序列,通过DpnⅠ消化PCR产物中剩余的甲基化的模板DNA,酶切后的PCR产物直接转化大肠杆菌,从而获得含有突变启动子的重组质粒。结果:通过一步法定点突变技术成功构建了bsh基因的三种突变启动子。结论:该方法简单高效,只要把握好对引物设计,高保真的DNA聚合酶、模板DNA的浓度以及PCR扩增程序的选择,突变成功率可以达到100%。  相似文献   

12.
Phenotypic screening for bile salt hydrolase (BSH) activity was performed on Lactobacillus acidophilus PF01 isolated from piglet feces. A gene encoding BSH was identified and cloned from the genomic library of L. acidophilus PF01. The bsh gene and surrounding regions were characterized by nucleotide sequence analysis and were found to contain a single open reading frame (ORF) of 951 nucleotides encoding a 316 amino acid protein. The potential bsh promoter region was located upstream of the start codon. The protein deduced from the complete ORF had high similarity with other BSHs, and four amino acid motifs located around the active site, FGRNXD, AGLNF, VLTNXP, and GXGXGXXGXPGD, were highly conserved. The bsh gene was cloned into the pET21b expression vector and expressed in Escherichia coli BLR(DE3) by induction with 0.1mM of isopropylthiogalactopyranoside. The BSH enzyme was purified with apparent homogeneity using a Ni2+-NTA agarose column and characterized. The overexpressed recombinant BSH enzyme of L. acidophilus PF01 exhibited hydrolase activity against tauroconjugated bile salts, but not glycoconjugated bile salts. It showed the highest activity against taurocholic acid. The maximum BSH activity occurred at approximately 40oC. The enzyme maintained approximately 70% of its maximum activity even at 60 degrees , whereas its activity rapidly decreased at below 37 degrees . The optimum pH was 6, and BSH activity was rapidly inactivated below pH 5 and above pH 7.  相似文献   

13.
14.
旨在构建植原体免疫主导膜蛋白Imp基因原核表达载体,并进行初步表达。以重组克隆质粒pMD18-T-Imp为模板,PCR扩增Imp基因片段。构建表达载体pET-28a(+)-Imp,转化宿主菌E.coliBL21(DE3)。筛选阳性克隆,提取重组质粒作PCR鉴定、酶切鉴定及IPTG诱导表达鉴定。PCR及双酶切结果显示,重组质粒pET-28a(+)-Imp构建成功。经IPTG诱导BL21(pET-28a(+)-Imp)表达约20 kD的蛋白,与预期的携带6×His-Tag的目的蛋白(19.5 kD)大小相符,主要以包涵体形式存在。结果显示,构建的表达载体pET-28a(+)-Imp在E.coliBL21(DE3)中能够达一定量表达,为进一步纯化Imp蛋白奠定基础。  相似文献   

15.
Genes coding for bile salt hydrolase of Lactobacillus plantarum CGMCC 8198, a novel probiotic strain isolated from silage, were identified, analyzed and cloned. L. plantarum strongly resisted the inhibitory effects of bile salts and also decreased serum cholesterol levels by 20 % in mice with hypercholesterolemia. Using RT-PCR analysis, bsh2, bsh3 and bsh4 were upregulated by bile salts in a dose-dependent manner. All three bsh genes had high similarity with those of other Lactobacillus strains. All three recombinant BSHs had high activities for the hydrolysis of glycodeoxycholic acids and taurodeoxycholic acids.  相似文献   

16.
The present work describes the identification, purification, and characterization of bile salt hydrolase (BSH) from Bifidobacterium animalis subsp. lactis. The enzyme was purified to electrophoretic homogeneity by hydrophobic chromatography, ion-exchange chromatography and ultrafiltration. SDS-PAGE analysis of putative BSH and gel filtration revealed that the analyzed protein is presumably a tetramer composed of four monomers each of about 35 kDa. The purified enzyme was analyzed by liquid chromatography coupled to LTQ FT ICR mass spectrometry and unambiguously identified as a bile salt hydrolase from B. animalis. The isoelectric point of the studied protein was estimated to be around pH 4.9. The pH optimum of the purified BSH is between 4.7 to 6.5, and the temperature optimum is around 50 degrees C. The BSH of B. animalis could deconjugate all tested bile salts, with clear preference for glycine-conjugated bile salts over taurine-conjugated forms. Genetic analysis of the bsh showed high similarity to the previously sequenced bsh gene from B. animalis and confirmed the usefulness of bile salt hydrolase as a genetic marker for B. animalis identification.  相似文献   

17.
乙内酰脲水解酶基因在大肠杆菌中的克隆表达   总被引:2,自引:0,他引:2  
节杆菌BT801的乙内酰脲酶系能够水解5-苄基乙内酰脲生成L-苯丙氨酸,其中乙内酰脲水解酶负责乙内酰脲的水解开环。乙内酰脲水解酶的表达对于乙内酰脲酶的催化机制研究及氨基酸的生物不对称合成都具有重要意义。通过PCR技术扩增得到乙内酰脲水解酶基因(hyuH),置于表达载体pT221的,17启动子下游,将构建的重组质粒引入大肠杆菌BL21(DE3)。SDS-PAGE分析在相对分子量50kD处有一较强的表达带,经薄层扫描分析目的蛋白占全菌蛋白的40%,主要以可溶性形式存在,活性分析表明表达产物具有天然的酶活性。  相似文献   

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19.
为开发新型荧光蛋白标记乳酸菌以填补国内研究空白,利用pSIP载体,构建了以红色荧光蛋白mCherry为标记,并以乳酸菌胆盐水解酶基因bsh为报告基因的乳酸菌融合表达系统。在4种不同启动子(P_(sppA)、P_(ldhL)、P_(32)和P_(slpA))调节下,相继实现了融合基因的诱导型和组成型表达,表达的融合重组蛋白mCherry-BSH同时检测出红色荧光活性和胆盐水解酶BSH活性。mCherry红色荧光标记的乳酸菌融合表达系统的成功构建不仅为研究乳酸菌在生物体内的分布、定植及存活情况从而揭示其益生功能的作用机理提供有利条件,也为更多活性蛋白在乳酸菌宿主中的表达、细胞定位、功能鉴定的研究奠定基础。  相似文献   

20.
Bile salts play an important role in the digestion of lipids in vertebrates and are synthesized and conjugated to either glycine or taurine in the liver. Following secretion of bile salts into the small intestine, intestinal microbes are capable of deconjugating the glycine or taurine from the bile salts, using an enzyme called bile salt hydrolase (Bsh). Intestinal lactobacilli are regarded as major contributors to bile salt hydrolysis in vivo. Since the bile salt-hydrolyzing strain Lactobacillus plantarum WCFS1 was predicted to carry four bsh genes (bsh1, bsh2, bsh3, and bsh4), the functionality of these bsh genes was explored using Lactococcus lactis heterologous overexpression and multiple bsh deletion strains. Thus, Bsh1 was shown to be responsible for the majority of Bsh activity in L. plantarum WCFS1. In addition, bsh1 of L. plantarum WCFS1 was shown to be involved in conferring tolerance to specific bile salts (i.e., glycocholic acid). Northern blot analysis established that bsh1, bsh2, bsh3, and bsh4 are all expressed in L. plantarum WCFS1 during the exponential growth phase. Following biodiversity analysis, bsh1 appeared to be the only bsh homologue that was variable among L. plantarum strains; furthermore, the presence of bsh1 correlated with the presence of Bsh activity, suggesting that Bsh1 is commonly responsible for Bsh activity in L. plantarum strains. The fact that bsh2, bsh3, and bsh4 genes appeared to be conserved among L. plantarum strains suggests an important role of these genes in the physiology and lifestyle of the species L. plantarum. Analysis of these additional bsh-like genes in L. plantarum WCFS1 suggests that they might encode penicillin acylase rather than Bsh activity, indicating their implication in the conversion of substrates other than bile acids in the natural habitat.  相似文献   

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