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Maize as production and delivery vehicle of edible vaccines against the enterotoxigenic Escherichia coli and the swine transmissible gastroenteritis (TGE).

机译:玉米作为可食用疫苗的生产和运输载体,可用于抵抗产肠毒素的大肠埃希氏菌和猪传染性胃肠炎(TGE)。

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摘要

Plants are becoming increasingly important as a production system for biopharmaceuticals and industrially important proteins. The work presented in this dissertation showed that maize can be used as a source and delivery vehicle for oral vaccines. Antigenic proteins from two economically important pathogens, enterotoxigenic Escherichia coli (E. coli ) and the swine transmissible gastroenteritis virus (TGEV) were expressed in transgenic maize.; This study showed that subunits of the E. coli heat labile enterotoxin (LT) can be synthesized in transgenic maize tissues, correctly processed and assembled in maize tissue. The role of regulatory sequences such as promoters, targeting and retention signals in accumulation of LT-B in transgenic maize kernels was studied. The seed specific 27 kDa gamma zein promoter achieved a significantly higher level of LT-B expression in kernels compared to the constitutive CaMV 35S promoter. The use of the endoplasmic reticulum retention motif SEKDEL significantly enhanced kernel accumulation of LT-B. The LT-13 gene was normally transmitted over three generations.; Maize generated LT-B had biochemical, biophysical, and immunogenic properties of the bacterial protein. Oral administration of transgenic maize expressing LT-B in BALB/c mice induced elevated titers of serum and mucosal antibodies, which protected the immunized animals from subsequent challenge with LT and Cholera toxin (CT).; Using two synthetic genes for the LT toxin subunits, LT-A and LT-B, a non-toxic derivative of the heat labile toxin, LTK63, was expressed in transgenic maize callus. This mutant toxin assembled in maize callus tissue, showing that complex folding of foreign antigens could be achieved in transgenic maize tissues. This mutant derivative was shown to be more immunogenic than the bacteria derived LT-B.; We fused an N-terminal domain of the spike (S) protein of the swine transmissible gastroenteritis virus to the A subunit of LT, and coexpressed this fusion with LT-B in transgenic maize callus. Expression of the fusion proteins and LT-B was observed in callus.; This work demonstrates that maize, a key ingredient in food and feed industry, can be used as a source and delivery vehicle of functional antigens for use as oral vaccines. Maize holds great potential for the generation of human and livestock vaccines, and this work lays the foundation for the development of vaccines against other pathogens in transgenic maize.
机译:作为生物制药和工业上重要的蛋白质的生产系统,植物变得越来越重要。本文的工作表明,玉米可以作为口服疫苗的来源和传递载体。在转基因玉米中表达了来自两种经济上重要的病原体,即产肠毒素的大肠杆菌 E。coli )和猪传染性胃肠炎病毒(TGEV)的抗原蛋白。这项研究表明 E的亚基。大肠杆菌热不稳定肠毒素(LT)可以在转基因玉米组织中合成,并在玉米组织中正确加工和组装。研究了启动子,靶向和保留信号等调控序列在转基因玉米粒中LT-B积累中的作用。与组成型CaMV 35S启动子相比,种子特异性27 kDaγ玉米醇溶蛋白启动子在籽粒中的LT-B表达水平明显更高。内质网保留基序SEKDEL的使用显着增强了LT-B的籽粒积累。 LT-13基因通常可以传三代。玉米产生的LT-B具有细菌蛋白的生化,生物物理和免疫原性。在BALB / c小鼠中口服表达LT-B的转基因玉米诱导提高的血清和粘膜抗体滴度,这保护了免疫的动物免于随后受到LT和霍乱毒素(CT)的攻击。使用LT毒素亚基的两个合成基因LT-A和LT-B,在转基因玉米愈伤组织中表达了热不稳定毒素LTK63的无毒衍生物。这种突变毒素在玉米愈伤组织中聚集,表明在转基因玉米组织中可以实现外源抗原的复杂折叠。该突变体衍生物显示出比细菌衍生的LT-B更具免疫原性。我们将猪可传播的胃肠炎病毒的穗状蛋白(S)蛋白的N末端域融合到LT的A亚基上,并在转基因玉米愈伤组织中与LT-B共表达这种融合。在愈伤组织中观察到融合蛋白和LT-B的表达。这项工作表明,玉米是食品和饲料工业中的关键成分,可以用作用作口服疫苗的功能性抗原的来源和传递载体。玉米具有产生人和家畜疫苗的巨大潜力,这项工作为开发针对转基因玉米中其他病原体的疫苗奠定了基础。

著录项

  • 作者

    Chikwamba, Rachel Kerina.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Agriculture Plant Culture.; Biology Genetics.; Agriculture Animal Pathology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 p.3532
  • 总页数 239
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 作物生物学原理、栽培技术与方法;
  • 关键词

  • 入库时间 2022-08-17 11:46:32

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