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多表位白喉-百日咳-破伤风融合蛋白在转质体烟草植株中的表达保留了功能性寡聚体所有三个组分的抗原性和免疫原性。

Expression of a multi-epitope DPT fusion protein in transplastomic tobacco plants retains both antigenicity and immunogenicity of all three components of the functional oligomer.

作者信息

Soria-Guerra Ruth Elena, Alpuche-Solís Angel G, Rosales-Mendoza Sergio, Moreno-Fierros Leticia, Bendik Elise M, Martínez-González Luzmila, Korban Schuyler S

机构信息

Department of Natural Resources and Environmental Sciences, University of Illinois, Urbana, IL 61821, USA.

出版信息

Planta. 2009 May;229(6):1293-302. doi: 10.1007/s00425-009-0918-2. Epub 2009 Mar 21.

Abstract

Expression of genes in plant chloroplasts provides an opportunity for enhanced production of target proteins. We report the introduction and expression of a fusion DPT protein containing immunoprotective exotoxin epitopes of Corynebacterium diphtheriae, Bordetella pertussis, and Clostridium tetani in tobacco chloroplasts. Using biolistic-mediated transformation, a plant-optimized synthetic DPT gene was successfully transferred to tobacco plastomes. Putative transplastomic T0 plants were identified by PCR, and Southern blot analysis confirmed homoplasmy in T1 progeny. ELISA assays demonstrated that the DPT protein retained antigenicity of the three components of the fusion protein. The highest level of expression in these transplastomic plants reached 0.8% of total soluble protein. To assess whether the functional recombinant protein expressed in tobacco plants would induce specific antibodies in test animals, a mice feeding experiment was conducted. For mice orally immunized with freeze-dried transplastomic leaves, production of IgG and IgA antibodies specific to each toxin were detected in serum and mucosal tissues.

摘要

植物叶绿体中基因的表达为提高目标蛋白的产量提供了机会。我们报道了一种含有白喉棒状杆菌、百日咳博德特氏菌和破伤风梭菌免疫保护性外毒素表位的融合DPT蛋白在烟草叶绿体中的导入和表达。利用生物弹道介导的转化方法,将一个植物优化的合成DPT基因成功地转入烟草质体基因组。通过PCR鉴定出推定的转基因T0植株,Southern杂交分析证实T1后代中存在同质性。ELISA分析表明,DPT蛋白保留了融合蛋白三个组分的抗原性。这些转基因植株中的最高表达水平达到总可溶性蛋白的0.8%。为了评估在烟草植株中表达的功能性重组蛋白是否会在实验动物中诱导产生特异性抗体,进行了一项小鼠喂养实验。对于口服冻干转基因叶片免疫的小鼠,在血清和黏膜组织中检测到了针对每种毒素的IgG和IgA抗体的产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94e4/7087907/f1a458278e76/425_2009_918_Fig1_HTML.jpg

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