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目的:构建白细胞介素-21(interleukin-21,IL-21)和乙型肝炎病毒前S2S抗原(S2S)的融合表达质粒,并研究其在293T细胞中的表达。方法:采用PCR方法扩增IL-21和HBV前S2S基因片段,分别克隆入pcDNA3真核表达质粒,用分子克隆方法构建融合表达质粒,并以脂质体2000转染293T细胞,分别应用ELISA法和Western Blot法检测细胞上清及细胞中IL-21和HBsAg的表达水平。结果:经酶切鉴定及DNA序列证实重组质粒内插入片段序列正确,三种重组质粒分别命名为pcDNA-IL-21、pcDNA-S2S和pcDNA-IL-21-S2S,并且重组质粒能在293T细胞内表达并分泌相关蛋白。结论:成功构建IL-21和乙型肝炎病毒前S2S抗原的融合表达质粒,重组质粒能在真核细胞内表达。  相似文献   

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构建含HBV PreS2 S和INF-α融合基因的真核表达载体HBV PreS2 S/INF-α并在真核细胞中进行表达,应用重叠延伸剪切技术(splicing by overlapping extension,简称SOE)经两次PCR获得嵌合基因片段S2S/IFN-α,回收后直接克隆到pcDNA3.1 V5/His TOPO TA克隆载体,得到真核重组载体pcDNA3.1.S2S/IFN-α然后用指质体法转染Vero E6细胞。对重组载体进行了限制性酶切及PCR鉴定证明连续正确;经间接免疫荧光检测证实该重组载体能在真核细胞中表达插入的外源性基因编码的融合蛋白。真核表达载体pcDNA3.1.S2S/IFN-α成功构建及在Vero E6细胞中的有效表达,为进一步探讨HBV感染的特异性免疫治疗提供了实验依据。  相似文献   

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Cheng LS  Liu AP  Yang JH  Dong YQ  Li LW  Wang J  Wang CC  Liu J 《Cell research》2003,13(1):35-48
The c-erbB-2 proto-oncogene encodes a 185kD protein p185,which belongs to epidermal growth factor receptor family.Amplification of this gene has been shown to correlate with poor clinical prognosis for certain cancer patients.The monoclonal antibody A21 which directed against p185 specifically inhibits proliferation of tumor cells overexpressing p185,hence allows it to be a candidate for targeted therapy.In order to overcome several drawbacks of murine MAb,we cloned its VH and VL genes and constructed the single-chain FV(scFv)through a peptide linker.The recombinant scFv A21 was expressed in Escherichia coli and purified by the affinity column.Subsequently it was characterized by ELISA,Western blot,cell immunohistochemistry and FACS.All these assays showed the binding activity to extracellular domain(ECD)of p185.Based on those properties of scFvA21,we further constructed the scFv-Fc fusion molecule with a homodimer form and the recombinant product was expressed in mammalian cells.In a series of subsequent analysis this fusion protein showed identical antigen binding site and activity with the parent antibody.These anti-p185 engineered antibodies have promised to be further modified as a tumor targeting drugs,with a view of application in the diagnosis and treatment of human breast cancer.  相似文献   

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INTRODUCTIONHepatitis B virus (HBV) infection is the mostcommon viral infection in humans especially inChina and East Asia. At present, the most effi-cient method to control the disease is vaccinationof new-borns. Both blood derived vaccine and re-combinant vaccine are hepatitis B surface alltigen(HBsAg)-based and useful in the prevention of thedisease[1-3]. HBsAg could evoke protective humoralimmune response in vivo, but the immune memoryonly last for 5 years or so[3, 4]. How to des…  相似文献   

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Characteristics of pre-S2 region of hepatitis B virus   总被引:1,自引:0,他引:1  
The nucleotide sequence of our cloned HBV DNA (subtype adw) has been determined. When the 165-nucleotide sequence of the pre-S2 region was compared with 7 other published sequences (subtypes adw, adr, ayw, and adyw), we found 38 nucleotide substitutions among different subtypes and 4 (adr) or 6 (adw and ayw) substitutions within the same subtype. Analysis of the predicted amino acid sequence from the known nucleotide sequences indicates that: there are 20 amino acid substitutions, the longest conserved amino acid sequence is located between amino acids 23 to 34, and the 54th amino acid is identical within the same subtype but varies in different subtypes.  相似文献   

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The pre-S2-coding region in the hepatitis B virus surface antigen M (P31; pre-S2 + S) protein gene was modified to identify a polymerized-albumin receptor (PAR) domain by deleting restriction fragments or performing site-directed mutagenesis. The modified M protein genes (M-P31x; x = d, e, f, h and i) were cloned into the yeast generalized-expression vector pGLD 906-1 and expressed in Saccharomyces cerevisiae under the control of yeast glyceraldehyde-3-phosphate dehydrogenase gene promoter. The PAR activities of these gene products suggested that the PAR domain is located in the hydrophilic and highly conserved domain in the pre-S2 region (around Leu12 approximately Tyr21). Antibodies specific for a pre-S2 peptide (Phe8 approximately Pro34, subtype adr), which covers the PAR domain, were purified from sera of rabbits immunized with yeast-derived M protein particles having a natural PAR domain. Immune electron microscopy showed that the purified antibodies could aggregate HBV particles. Therefore, it was speculated that the PAR domain overlapped with the dominant virus-neutralizing and virus-protecting epitopes.  相似文献   

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Staphylococcus aureus is a major human pathogen. Pathogenic effects are largely due to production of bacterial toxins, whose synthesis is controlled by an mRNA molecule termed RNAIII. The S. aureus protein called RAP (RNAIII-activating protein) is secreted and activates RNAIII production by inducing the phosphorylation of its target protein TRAP (target of RAP). Antibodies to TRAP have been shown to suppress exotoxin production by S. aureus in vitro, suggesting that TRAP may be a useful vaccine target site. Here we showed that a peptide TA21 was identified by screening a phage display library using anti-TRAP antibodies. Mice vaccinated with Escherichia coli engineered to express TA21 on their surface (FTA21) were protected from S. aureus infections, using sepsis and cellulitis mice models. By sequence analysis, it was found that the TA21 is highly homologous to the C-terminal sequence of TRAP which is conserved among S. aureus and Staphylococcus epidermidis, suggesting that peptide TA21 may be a useful broad vaccine to protect from infection caused by various staphylococcal strains.  相似文献   

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The cloning and expression of the hepatitis B middle-protein surface antigen gene in the yeast Saccharomyces cerevisiae is described. A generalized expression vector carrying the yeast glyceraldehyde-3-phosphate dehydrogenase gene promoter was used. Expressed material, in the form of supramolecular particles, was purified and characterized. Severe proteolysis within the pre-S(2) region was observed for material expressed in a wild-type yeast host. This proteolysis was substantially reduced by utilization of a protease-deficient host. Immunoblotting of sodium dodecyl sulfate-polyacrylamide gels with several antibodies of differing specificity was performed to characterize the various protein species present. All species were analyzed by N-terminal sequencing after electroelution from gels. Carbohydrate staining of gels and glycosidase treatments of the purified antigen material indicated that full-length antigen was present in both glycosylated and unglycosylated forms. Glycosylation appeared to be of both asparagine-linked and threonine/serine-linked types. Site-directed mutagenesis was used to convert two arginine residues in the pre-S(2) region of the antigen to glutamine residues. The changes abolished reactivity with one polyclonal and two monoclonal antibodies specific for epitopes within the pre-S(2) region.  相似文献   

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We have constructed a humanized antibody with specificity for the pre-S2 surface antigen of hepatitis B virus (HBV) by grafting the complementarity determining regions (CDRs) of parental murine monoclonal antibody (mAb) into human anti-Sm antibody framework regions. The humanized antibody has a substitution at position 94 in a framework region of the heavy chain variable region, and exhibits the same antigen binding affinity as the parental murine monoclonal and chimeric antibodies. In order to assess the stability of these antibodies, thermal inactivation of the parental, chimeric and humanized antibodies was analyzed. Fifty percent inactivation of the chimeric and humanized antibodies was observed at 63.7 degrees C and 68.7 degrees C, respectively, compared to 55.0 degrees C for murine antibody. The humanized antibody also exhibited increased stability against denaturant. Guanidine-induced unfolding monitored by the changes in fluorescence intensity at 360 nm showed that midpoints of the transition of the chimeric and humanized antibodies were 2.47 M and 2.56 M, respectively, whereas that of the murine antibody was 1.36 M.  相似文献   

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Background  

Chronic hepatitis B virus (HBV) infection is an important cause of hepatocellular carcinoma (HCC) worldwide. The pre-S1 and -S2 mutant large HBV surface antigen (LHBS), in which the pre-S1 and -S2 regions of the LHBS gene are partially deleted, are highly associated with HBV-related HCC.  相似文献   

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A new system designed for cell surface display of recombinant proteins on Escherichia coli was evaluated for expression of eukaryotic viral antigens. The major surface antigen of hepatitis B virus (HBsAg) was fused to the ice nucleation protein (INP), an outer membrane protein of Pseudomonas syringae. Western blotting, immunofluorescence microscopy, whole-cell ELISA, and ice nucleation activity assay confirmed expression of recombinant proteins on the surface of Escherichia coli. This study indicated that INP-based cell surface display can be used for epitope mapping and recombinant bacteria expressing hepatitis viral antigens may be used for developing live vaccines.  相似文献   

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miRNAs are nodal regulators of gene expression and deregulation of miRNAs is causally associated with different diseases, including cancer. Modulation of miRNA expression is thus of therapeutic importance. Small molecules are currently being explored for their potential to downregulate miRNAs. Peptides have shown to have better potency and selectivity toward their targets but their potential in targeting and modulating miRNAs remain unexplored. Herein, using phage display we found a very selective peptide against pre-miR-21. Interestingly, the peptide has the potential to downregulate miR-21, by binding to pre-miR-21 and hindering Dicer processing. It is selective towards miR-21 inside the cell. By antagonising miR-21 function, the peptide is able to increase the expression of its target proteins and thereby increase apoptosis and suppress cell proliferation, invasion and migration. This peptide can further be explored for its anti-cancer activity in vivo and may be even extended to clinical studies.  相似文献   

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Summary Various physico-chemical parameters have been studied in order to improve the production of hepatitis B virus pre-S2 antigen (middle surface antigen) by the methylotrophic yeastHansenula polymorpha. Antigen production was done in two steps: first, production of cells on glycerol (Phase 1), followed by induction of antigen expression with methanol (Phase 2). Dense cultures ofH. polymorpha, equivalent to 35–40 g/l (dry weight), were readily obtained in small fermenters using minimal medium containing glycerol as carbon source. Antigen expression in this minimal medium, after induction with methanol, was however low and never exceeded 1.6 mg/l of culture. Antigen production was greatly enhanced by adding complex organic nitrogen sources along with methanol at induction time; yeast extract was the best of all the sources tested. In shake flasks, antigen production was proportional to yeast extract concentration up to 7% (w/v) yeast extract. it became clear that the nutritional conditions for good antigen expression were different from those for good biomass production. The effects of yeast extract were reproduced in small fermenters: antigen levels reached 8–9 mg/l in medium containing 6% (w/v) yeast extract during induction with methanol. The mechanisms of yeast extract's effects are still unknown but are probably nutritional. The recombinantH. polymorpha strain produced both periplasmic and intracellular antigen. The periplasmic antigen was shown to be present as 20–22-nm particles and was therefore immunogenic. Immunoblotting indicated that part of the pre-S2 antigen was present as a 24-kDa degradation product. These studies have led to a 140-fold increase in volumetric productivity of antigen and to a 4.6-fold increase in specific production.Part of these results have been presented at the Deuxième Congrès de la Société Française de Microbiologie, Strasbourg, France, September 1989.  相似文献   

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