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分支杆菌 16.8 kDa 抗原与鼠 γ干扰素在双顺反子载体中的共表达及其作为 DNA 疫苗的潜力研究。

Coexpression of 16.8 kDa antigen of Mycobacterium avium paratuberculosis and murine gamma interferon in a bicistronic vector and studies on its potential as DNA vaccine.

机构信息

Scientist Biotechnology Centre, Jawaharlal Nehru Agriculture University, Jabalpur, MP, 482004, India.

出版信息

Vet Res Commun. 2009 Oct;33(7):597-610. doi: 10.1007/s11259-009-9207-6. Epub 2009 Feb 6.

DOI:10.1007/s11259-009-9207-6
PMID:19199070
Abstract

Paratuberculosis or Johne's disease is a chronic gastric disease of ruminants. For this disease there is no effective treatment or preventive measure available. 16.8 kDa protein is an immunogenic protein of Mycobacterium avium paratuberculosis and can be an ideal candidate for developing a DNA vaccine construct. In present study a bicistronic DNA vaccine construct pIR16.8/IFN was developed using eukaryotic vector pIRES 6.1. Two genes MPT (expressing 16.8 kDa protein) and murine IFNgamma were cloned, expressed and immunoreactivity was studied in murine model. Immunoreactivity was also compared with monocistronic construct pIR16.8 expressing 16.8 kDa protein. Both pIR16.8 and pIR16.8/IFN showed eukaryotic expression of respective proteins in BHK21 cells. The expressed proteins also showed immunoreactivity when reacted with hyperimmune sera raised against recombinant 16.8 kDa protein in western blot assay and immunofluorence assay. Both constructs were used as DNA vaccine in murine model and immunogenecity was studied by DTH, lymphocyte proliferation assay and NO determination. DTH reaction was significantly high in pIR16.8/IFN than pIR16.8 group, similarly lymphocyte proliferation and NO release was higher in pIR16.8/IFN group than pIR16.8 group. This indicated T cell epitopic nature of 16.8 kDa protein. The study also showed that co-expression of IFNgamma with mycobacterial gene can enhance immunogenecity of DNA vaccine and can be used as immunoadjuvant.

摘要

副结核病或约翰氏病是反刍动物的一种慢性胃病。对于这种疾病,目前尚无有效的治疗或预防措施。16.8 kDa 蛋白是禽分枝杆菌副结核病的免疫原性蛋白,可作为构建 DNA 疫苗的理想候选物。本研究利用真核载体 pIRES 6.1 构建了双顺反子 DNA 疫苗 pIR16.8/IFN。克隆了两个基因 MPT(表达 16.8 kDa 蛋白)和鼠 IFNγ,并在小鼠模型中研究了其表达和免疫反应性。还将其与表达 16.8 kDa 蛋白的单顺反子构建体 pIR16.8 进行了比较。pIR16.8 和 pIR16.8/IFN 均在 BHK21 细胞中显示出各自蛋白的真核表达。用针对重组 16.8 kDa 蛋白的高免血清进行 Western blot 分析和免疫荧光分析,显示表达的蛋白具有免疫反应性。将这两种构建体均用作小鼠模型中的 DNA 疫苗,并通过 DTH、淋巴细胞增殖试验和 NO 测定研究其免疫原性。在 pIR16.8/IFN 组中,DTH 反应明显高于 pIR16.8 组,同样,pIR16.8/IFN 组中的淋巴细胞增殖和 NO 释放也高于 pIR16.8 组。这表明 16.8 kDa 蛋白具有 T 细胞表位性质。该研究还表明,IFNγ与分枝杆菌基因的共表达可以增强 DNA 疫苗的免疫原性,并可用作免疫佐剂。

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A bicistronic DNA vaccine containing apical membrane antigen 1 and merozoite surface protein 4/5 can prime humoral and cellular immune responses and partially protect mice against virulent Plasmodium chabaudi adami DS malaria.一种包含顶端膜抗原1和裂殖子表面蛋白4/5的双顺反子DNA疫苗可引发体液免疫和细胞免疫反应,并部分保护小鼠免受恶性疟原虫DS株的致命感染。
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编码鸟分枝杆菌副结核亚种34.9 kDa PPE抗原的基因在大肠杆菌中的表达
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