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1.
生物素化荧光素酶的克隆表达及其固定化研究   总被引:1,自引:0,他引:1  
为了在体内实现萤火虫荧光素酶的生物素酰化修饰,我们将大肠杆菌中编码生物素羧基载体蛋白(biotin carboxyl carrier protein,BCCP)C端87个氨基酸的功能域基因融合到萤火虫(Pyrocoelia pectoralis)荧光素酶cDNA的末端。经大肠杆菌生物素合成酶(biotin holoenzyme synthetase)的催化,生物素与BCCP上特定的赖氨酸(Lys)残基共价结合,由此与BCCP融合的萤火虫荧光素酶间接实现了生物素化的修饰。利用生物素与配体亲和素或链霉亲和素的特异性耦合,可以将荧光素酶固定到亲和素或链霉亲和素包被的磁珠上,从而使荧光检测的应用更加灵活和方便。本文将就生物素化荧光素酶的克隆、表达以及功能检测进行具体讨论。  相似文献   

2.
为了避免四酶焦测序体系中由于三磷酸腺苷双磷酸酶(apyrase)造成的测序结果偏差, 文章建立了一种定量性能好的无三磷酸腺苷双磷酸酶的三酶焦测序体系。方法是将生物素修饰的DNA模板、荧光素酶和ATP硫酸化酶固定在磁性微球表面进行焦测序反应, 当加入一种dNTP进行焦测序反应完后, 采用磁性分离技术, 除去焦测序反应产生的ATP和剩余的dNTP, 然后加入另一种dNTP进行测序, 按同样的方法去除影响下一轮测序反应的成分, 实现循环测序。此体系能准确判读待测DNA的碱基序列, 且可定量测定单核苷酸序列多态性(SNP)中两种等位基因型的相对比值。文章成功检测了16例正常人和8例唐氏综合征患者样本中21号染色体上两个杂合率较高位点(rs1042917和 rs4818219)的等位基因型比值, 所得结果能够明确说明待测样本中来自于父方和母方的21号染色体数目是否相等。该法具有良好的定量性能, 适合于SNP等位基因型的定量分析, 可以用于唐氏综合征的快速检测。  相似文献   

3.
目的 GFP(绿色荧光蛋白)-SA(链亲和素)双功能融合蛋白的制备及其鉴定研究,以展示我们建立的技术平台,即用含链亲和素的双功能融合蛋白对生物素化的细胞表面进行高效的锚定修饰。方法 构建原核表达载体pET24d/GFP-SA转化大肠杆菌BL21(DE3)。用IPTG诱导重组蛋白的表达,用镍金属螯合(Ni-NTA)层析柱进行纯化。用制备的GFP-SA双功能融合蛋白,对B16肿瘤细胞已生物素化的细胞表面进行修饰,经荧光显微镜和流式细胞仪进行修饰效率分析。此外,用MTT法检测细胞表面修饰对肿瘤细胞活力及其生长情况的影响。结果 GFP-SA重组融合蛋白在大肠杆菌实现了高效表达(约占细菌总蛋白的20%),通过纯化和复性制备的GFP-SA双功能融合蛋白具有双重活性,即:链亲和素介导的、对生物素高效特异的结合活性,和GFP发射绿色荧光的活性,并能高效修饰表面已生物素化的肿瘤细胞。此外,GFP-SA双功能融合蛋白的细胞表面修饰对细胞的活力及其生长无显著影响。结论 GFP-SA融合蛋白能高效修饰表面已生物素化的肿瘤细胞,可用作肿瘤疫苗研究的示踪蛋白及实验对照体系。  相似文献   

4.
ATP-硫酸化酶(ATPS,EC2.7.7.4)是一种可逆催化ATP和SO42-反应生成腺嘌呤-5′-磷酸硫酸(APS)和焦磷酸盐(PPi)的酶,已经用于焦测序反应。以酿酒酵母(Saccharomyces cerevisias,CICC1202)基因组DNA为模板,用PCR扩增得到ATPS基因,并克隆到原核表达质粒pET28a( ),得到重组表达质粒pET28a( )-ATPS,在IPTG诱导下,携带pET28a( )-ATPS的大肠杆菌BL21(DE3)表达分子量约为60kD的带有His标签的ATPS酶,经镍亲和层析和超滤两步纯化后,可得到电泳纯级ATPS,比活达5.1×104u/mg,并成功应用于焦测序反应中。  相似文献   

5.
《生命科学研究》2016,(1):16-20
建立基于生物素AP-tag标签的FOXM1真核表达载体,利用生物素与链霉亲和素的高特异性、高亲和力的结合性质对FOXM1蛋白进行纯化,为后续鉴定其互作分子的研究奠定基础。分别构建真核表达载体pc DNA3.1-AP-FOXM1和大肠杆菌生物素连接酶Bir A真核表达载体pcDNA3.1-Bir A,将pcDNA3.1-AP-FOXM1和pcDNA3.1-BirA共转染人胚肾293T(HEK293T)细胞,用银染及Western印迹检测细胞裂解液,确定相关蛋白表达;用链霉亲和素琼脂糖珠纯化生物素标记的FOXM1,并考察FOXM1的互作蛋白是否可以同时被洗脱下来。研究发现构建的生物素标签真核表达体系能有效表达生物素化的目标蛋白FOXM1;该蛋白在Western印迹、pull-down等实验中可实现无需抗体的一步法应用;该体系可用于FOXM1互作蛋白的鉴定和功能分析。结果表明建立了基于生物素AP-tag标签的FOXM1真核表达体系,为FOXM1互作蛋白与功能的深入研究奠定了技术基础。  相似文献   

6.
目的:制备链亲和素标记的人白细胞介素-2(SA-hIL2)融合蛋白,并研究其生物学功能。方法:构建SA-L-IL2-pET24重组表达质粒,在大肠杆菌中表达SA-hIL2融合蛋白,对表达的SA-hIL2融合蛋白采用镍金属螯合(Ni-NTA)层析柱进行纯化,透析复性。CCK-8法检测SA-hIL2融合蛋白对PHA刺激的人外周血淋巴细胞的增值活性,流式细胞仪分析SA-hIL2融合蛋白对生物素化的B16.F10肿瘤细胞表面锚定修饰效率。结果:SA-hIL2在大肠杆菌中实现了高效表达,约占菌体总蛋白的20%,制备的SA-hIL2融合蛋白纯度达到95%,并具有双重活性,即hIL-2促进PHA刺激的人外周血淋巴细胞的增值活性和SA介导的高效结合至已生物素化的B16.F10肿瘤细胞表面的功能(表面锚定修饰效率约95%)。结论:研制的SA-hIL2融合蛋白具有双重活性,可为研制表面修饰的新型肿瘤细胞疫苗提供基础。  相似文献   

7.
我们利用基因工程的方法在大肠杆菌中制备了生物素化的膜联蛋白V。为此,我们构建了膜联蛋白V与乙酰C0A羧化产生物素受体肽DCP87的融合基因,并在大肠力中进行了表达。表达产物经HPLC检测,我们发现大约有60%的融合表达产物在大肠杆菌内进行了生物素化。生物素化的膜联蛋白V经抗生物素蛋白亲和层析化后用于吗啡诱导的下丘脑神经元细胞的凋亡检测,取得了理想的结果。  相似文献   

8.
目的:优化表达并纯化水蛭素融合蛋白SA-H-RGD,检测其生物学活性,获得能够与生物素标记的纤维蛋白适配子G81-2结合的偶联物。方法:将序列正确的质粒p ET-44b-SA-H-RGD进行原核表达,采用不同浓度的IPTG及时间优化融合蛋白表达条件,镍亲和凝胶层析柱纯化融合蛋白,Western-blot鉴定蛋白。通过凝血酶原时间(PT)和抗血小板聚集实验检测融合蛋白活性;之后按照生物素-G81-2:SA-H-RGD摩尔比为4:1的比例制备纤维蛋白特异性的偶联物,用凝胶迁移阻滞实验(EMSA)验证二者的偶联。结果:融合蛋白SA-H-RGD在IPTG 0.9 mmol/L、5 h时在大肠杆菌中获得可溶性高效表达,纯化的融合蛋白具有延长PT的作用和抑制血小板聚集的活性,EMSA表明SA-H-RGD具有结合生物素标记的G81-2适配子的功能。结论:本研究成功地优化表达了具有抗凝血和抗血小板聚集功能的融合蛋白SA-H-RGD,获得了水蛭素融合蛋白与生物素-G81-2适配子组成的靶向偶联物。  相似文献   

9.
目的:转铁蛋白受体特异性富含于血脑屏障和肿瘤细胞的表面,是当前中枢神经系统疾病和肿瘤治疗中定向转运的重要靶标。拟获得在大肠杆菌中能高效可溶表达的转铁蛋白受体单链抗体与链亲和素(SA)的重组融合蛋白。方法:根据GenBank数据库报道的SA的核苷酸序列分段合成基因,连接后经PCR获得完整的基因片段,插入pGEM-T载体中测序。将序列正确的SA基因与大鼠转铁蛋白受体单链抗体基因ox26-scFv分别插入原核表达载体pTIG-Trx中,构建重组表达克隆pTIG-Trx/scFv-SA,并在大肠杆菌中诱导表达。ELISA检测融合蛋白的生物学活性。结果:对pGEM-T/SA克隆的测序结果显示,合成的SA基因与文献报道相符。重组融合蛋白在大肠杆菌中获得了可溶性表达,约占菌体上清总蛋白量的30%;ELISA结果表明该融合蛋白具备与转铁蛋白受体和生物素的结合的双重活性。结论:有活性的重组融合蛋白的获得为构建一个通用性的以转铁蛋白受体介导的血脑屏障和肿瘤转运靶向载体打下了基础。  相似文献   

10.
目的:建立一种定量检测囊性纤维化跨膜传导调节因子(CFTR)的生物素-亲和素ELISA(BA-ELISA)方法并评价其可靠性。方法:优选设计CFTR三个表位的大肠杆菌表达抗原,免疫新西兰白兔获得CFTR多克隆抗体,用纯化后的抗体包被酶标板,并用生物素对其标记,从人精子提取CFTR作为抗原,用辣根过氧化物酶偶联的亲和素检测,优化两种抗体浓度及实验参数,建立可定量检测CFTR蛋白的双抗体夹心BA-ELISA方法;用临床精子标本评估所建立方法的重复性、特异性等。结果:CFTR包被抗体和生物素化CFTR抗体最适浓度分别为4μg/ml和10μg/ml,最佳封闭液为1%BSA-PBST,抗原与包被抗体最佳反应时间60 min,底物显色最佳时间15 min。批内、批间变异系数分别为2.16%~9.23%和2.29%~11.71%,包被的CFTR抗体与精子胞浆蛋白无交叉反应,最低检出下限为0.15 ng/ml,标准反应曲线具有良好的线性关系R2=0.962。结论:成功创建了定量检测CFTR蛋白的ELISA方法,具有特异性强、灵敏度高等特点。  相似文献   

11.
Biotinylated magnetic nanoparticles were constructed by displaying biotin acceptor peptide (BAP) or biotin carboxyl carrier protein (BCCP) on the surface of bacterial magnetic particles (BacMPs) synthesized by Magnetospirillum magneticum AMB-1. BAP-displaying BacMPs (BAP-BacMPs) were extracted from bacterial cells and incubated with biotin and Escherichia coli biotin ligase. Then the in vitro biotinylation of BAP-BacMPs was confirmed using alkaline phosphatase-labeled antibiotin antibody. In contrast, BacMPs displaying the intact 149 residues of AMB-1 BCCP (BCCP-BacMPs) and displaying the COOH-terminal 78 residues of BCCP (BCCP78-BacMPs) were biotinylated in AMB-1 cells. The in vivo biotinylation of BCCP-BacMPs and BCCP78-BacMPs was thought to be performed by endogenous AMB-1 biotin ligase. Streptavidin was introduced onto biotinylated BacMPs by simple mixing. In an analysis using tetramethyl rhodamine isocyanate-labeled streptavidin, approximately 15 streptavidin molecules were shown to be immobilized on a single BCCP-BacMP. Furthermore, gold nanoparticle-BacMP composites were constructed via the biotin-streptavidin interaction. The conjugation system developed in this work provides a simple, low-cost method for producing biotin- or streptavidin-labeled magnetic nanoparticles. Various functional materials can be site selectively immobilized on these specially designed BacMPs. By combining the site-selective biotinylation technology and the protein display technology, more innovative and attractive magnetic nanomaterials can be constructed.  相似文献   

12.
Control of microorganisms such as Bacillus cereus spores is critical to ensure the safety and a long shelf life of foods. A bifunctional single chain antibody has been developed for detection and binding of B. cereus T spores. The genes that encode B. cereus T spore single-chain antibody and streptavidin were connected for use in immunoassays and immobilization of the recombinant antibodies. A truncated streptavidin, which is smaller than but has biotin binding ability similar to that of streptavidin, was used as the affinity domain because of its high and specific affinity with biotin. The fusion protein gene was expressed in Escherichia coli BL21 (DE3) with the T7 RNA polymerase-T7 promoter expression system. Immunoblotting revealed an antigen specificity similar to that of its parent native monoclonal antibody. The single-chain antibody-streptavidin fusion protein can be used in an immunoassay of B. cereus spores by applying a biotinylated enzyme detection system. The recombinant antibodies were immobilized on biotinylated magnetic beads by taking advantage of the strong biotin-streptavidin affinity. Various liquids were artificially contaminated with 5 × 104 B. cereus spores per ml. Greater than 90% of the B. cereus spores in phosphate buffer or 37% of the spores in whole milk were tightly bound and removed from the liquid phase by the immunomagnetic beads.  相似文献   

13.
Beta-glucosidase from Bacillus licheniformis was in vivo biotinylated in Escherichia coli and subsequently immobilized directly from cell lysate on streptavidin coated magnetic particles. In vivo biotinylation was mediated by fusing the Biotin Acceptor Peptide to the C-terminal of beta-glucosidase and co-expressing the BirA biotin ligase. The approach enabled simultaneous purification and immobilization of the enzyme from crude cell lysate on magnetic particles because of the high affinity and strong interaction between biotin and streptavidin. After immobilization of the biotinylated beta-glucosidase the specific activity (using p-nitrophenyl-β-d-glucopyranoside as substrate) was increased 6.5 fold (compared to cell lysate). Immobilization of the enzyme resulted in improved thermal stability compared to free enzyme; after 2 h of incubation (at 50 °C) the residual enzyme activity of immobilized and free beta-glucosidase was 67 and 13%, respectively. The recyclability of immobilized beta-glucosidase was examined and it was observed that the enzyme could be recycled at least 9 times and retain 89% of its initial activity.  相似文献   

14.
We have successfully cloned and expressed core-streptavidin in Escherichia coli. Core-streptavidin was expressed in shaker flask culture as a soluble protein, isolated by periplasmic extraction, purified by immobilized metal affinity chromatography column, and analyzed for its size, thermal stability, and biotin-binding activity. In Western blots using streptavidin-horseradish peroxidase (HRP) as a probe, we identified a contaminant that co-purified with core-streptavidin, identified as biotin carboxyl carrier protein (BCCP). Although BCCP cannot be detected on sodium dodecyl sulfate-polyacrylamide gel electrophoresis, it appears as a prominent band in Western blot when probed with streptavidin peroxidase conjugate. Based on the results from in vitro gel digestion, mass spectrometry and Mascot database search results, we confirmed the presence of BCCP. It was found that BCCP can complex with core-streptavidin and can dissociate when heated above 80°C. BCCP could be successfully removed and recovered by using core-streptavidin immobilized magnetic beads under mild conditions. In addition, the enriched fractions of core-streptavidin oligotetramers were separated, which may be the by-products of BCCP binding to core-streptavidin in various ratios. Finally, enzyme linked immunosorbent assay results have shown that the amount of biotin-HRP binding to core-streptavidin was higher compared to commercially available streptavidin.  相似文献   

15.
Escherichia coli was engineered to intracellularly manufacture streptavidin beads. Variants of streptavidin (monomeric, core and mature full length streptavidin) were C-terminally fused to PhaC, the polyester granule forming enzyme of Cupriavidus necator. All streptavidin fusion proteins mediated formation of the respective granules in E. coli and were overproduced at the granule surface. The monomeric streptavidin showed biotin binding (0.7 ng biotin/microg bead protein) only when fused as single-chain dimer. Core streptavidin and the corresponding single-chain dimer mediated a biotin binding of about 3.9 and 1.5 ng biotin/mug bead protein, respectively. However, biotin binding of about 61 ng biotin/mug bead protein with an equilibrium dissociation constant (KD) of about 4 x 10(-8)M was obtained when mature full length streptavidin was used. Beads displaying mature full length streptavidin were characterized in detail using ELISA, competitive ELISA and FACS. Immobilisation of biotinylated enzymes or antibodies to the beads as well as the purification of biotinylated DNA was used to demonstrate the applicability of these novel streptavidin beads. This study proposes a novel method for the cheap and efficient one-step production of versatile streptavidin beads by using engineered E. coli as cell factory.  相似文献   

16.
To immobilize DNA fragments onto magnetic beads coated with streptavidin for isolation purpose, it is important to label one biotin molecule at one terminus of DNA fragment. After failure to label long DNA with biotin by PCR and filling-in reaction, a 9.2 kb DNA was labeled with biotin by a modified ligation strategy. A simple method is also reported to detect the quantity and integrity of DNA immobilized on the magnetic beads.  相似文献   

17.
Purification of low-abundance plasma-membrane (PM) protein complexes is a challenging task. We devised a tandem affinity purification tag termed the HPB tag, which contains the biotin carboxyl carrier protein domain (BCCD) of Arabidopsis 3-methylcrotonal CoA carboxylase. The BCCD is biotinylated in vivo , and the tagged protein can be captured by streptavidin beads. All five C-terminally tagged Arabidopsis proteins tested, including four PM proteins, were functional and biotinylated with high efficiency in Arabidopsis. Transgenic Arabidopsis plants expressing an HPB-tagged protein, RPS2::HPB, were used to develop a method to purify protein complexes containing the HPB-tagged protein. RPS2 is a membrane-associated disease resistance protein of low abundance. The purification method involves microsomal fractionation, chemical cross-linking, solubilization, and one-step affinity purification using magnetic streptavidin beads, followed by protein identification using LC-MS/MS. We identified RIN4, a known RPS2 interactor, as well as other potential components of the RPS2 complex(es). Thus, the HPB tag method is suitable for the purification of low-abundance PM protein complexes.  相似文献   

18.
The high affinity (kd= approximately 10(-15)M) of streptavidin and avidin for biotin is key to a large number of biological applications and is essentially irreversible unless the complex is exposed to harsh conditions (e.g. heat (100 degrees C for 10 min)), detergents, and/or denaturants which damage macromolecules. Thus, high binding affinity becomes a disadvantage when a biotinylated target must be released for further processing. This work describes relatively mild conditions that release biotin and mono- and bis-biotinylated macromolecules from immobilized streptavidin on monodispersed magnetic beads.  相似文献   

19.
The high affinity binding interaction of biotin to avidin or streptavidin has been used widely in biochemistry and molecular biology, often in sensitive protein detection or protein capture applications. However, in vitro chemical techniques for protein biotinylation are not always successful, with some common problems being a lack of reaction specificity, inactivation of amino acid residues critical for protein function and low levels of biotin incorporation. This report describes an improved expression system for the highly specific and quantitative in vivo biotinylation of fusion proteins. A short 'biotinylation peptide', described previously by Schatz, is linked to the N-terminus of Escherichia coli thioredoxin (TrxA) to form a new protein, called BIOTRX. The 'biotinylation peptide' serves as an in vivo substrate mimic for E. coli biotin holoenzyme synthetase (BirA), an enzyme which usually performs highly selective biotinylation of E.coli biotin carboxyl carrier protein (BCCP). A plasmid expression vector carrying the BIOTRX and birA genes arranged as a bacterial operon can be used to obtain high level production of soluble BIOTRX and BirA proteins and, under appropriate culture conditions, BIOTRX protein produced by this system is completely biotinylated. Fusions of BIOTRX to other proteins or peptides, whether these polypeptides are linked to the C-terminus or inserted into the BIOTRX active site loop, are also quantitatively biotinylated. Both types of BIOTRX fusion can be captured efficiently on avidin/streptavidin media for purification purposes or to facilitate interaction assays. We illustrate the utility of the system by measurements of antibody and soluble receptor protein binding to BIOTRX fusions immobilized on streptavidin-conjugated BIAcore chips.  相似文献   

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