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Immunogenicity of recombinant hepatitis B virus surface antigen fused with preS1 epitopes expressed in rice seeds.

机译:重组B型肝炎病毒表面抗原与水稻种子中表达的preS1表位融合的免疫原性。

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摘要

To test the possibility of producing a novel hepatitis B vaccine in plants, the modified hepatitis B virus (HBV) surface antigen (HBsAg) gene SS1 was expressed in rice under the control of the seed-specific Glub-4 promoter. The SS1 gene encodes a fusion protein consisting of amino acids 21-47 of the hepatocyte receptor-binding presurface 1 region (preS1) fused to the truncated C-terminus of the major HBV surface (S) protein. The production of antibodies against the preS1 region acts to protect humans against HBV infection by preventing HBV from binding to hepatocytes. The presence of SS1 in the genome of transgenic rice was confirmed by PCR and Southern blot analysis, and RNA dot blot analysis indicated that the fused SS1 gene was specifically expressed in rice seeds, with the highest expression level being about 31.5 ng/g dry weight grain. Western blot analysis revealed that the recombinant SS1 protein could be specifically recognized by both an anti-S protein antibody and an anti-preS1 antibody. The recombinant SS1 protein was also observed to form virus-like particles with a diameter of about 22 nm and a density of 1.25 g cm(-3). Furthermore, immunological responses against both the S and preS1 epitopes were induced in BALB/c mice immunized with the recombinant SS1 protein, indicating that this rice-derived SS1 protein could be a promising candidate as an alternative HBV vaccine for preventing hepatitis B.
机译:为了测试在植物中生产新型乙型肝炎疫苗的可能性,在种子特异性Glub-4启动子的控制下,在水稻中表达了修饰的乙型肝炎病毒(HBV)表面抗原(HBsAg)基因SS1。 SS1基因编码一种融合蛋白,该蛋白由与主要HBV表面(S)蛋白的截短C末端融合的肝细胞受体结合前表面1区(preS1)的21-47位氨基酸组成。针对preS1区域的抗体的产生可通过防止HBV与肝细胞结合来保护人类免受HBV感染。通过PCR和Southern印迹分析证实了SS1在转基因水稻基因组中的存在,并且RNA斑点印迹分析表明融合的SS1基因在水稻种子中特异性表达,最高表达水平约为31.5 ng / g干重。粮食。 Western印迹分析表明,重组SS1蛋白可以被抗S蛋白抗体和抗preS1抗体特异性识别。还观察到重组SS1蛋白形成直径约22 nm,密度为1.25 g cm(-3)的病毒样颗粒。此外,在用重组SS1蛋白免疫的BALB / c小鼠中诱导了针对S和preS1表位的免疫反应,这表明这种水稻来源的SS1蛋白可以作为预防乙型肝炎的替代HBV疫苗成为有希望的候选者。

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