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首页> 外文期刊>Plant Biotechnology Journal >Production of the 42-kDa fragment of Plasmodium falciparum merozoite surface protein 1, a leading malaria vaccine antigen, in Arabidopsis thaliana seeds.
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Production of the 42-kDa fragment of Plasmodium falciparum merozoite surface protein 1, a leading malaria vaccine antigen, in Arabidopsis thaliana seeds.

机译:生产42-KDA片段的疟原虫疟原虫 Merozoite表面蛋白1,是一种领先的疟疾疫苗抗原,在 rapidopsis thalianaaa 种子中。

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Malaria is widely associated with poverty, and a low-cost vaccine against malaria is highly desirable for implementing comprehensive vaccination programmes in developing countries. Production of malaria antigens in plants is a promising approach, but its development has been hindered by poor expression of the antigens in plant cells. In the present study, we targeted plant seeds as a low-cost vaccine production platform and successfully expressed the Plasmodium falciparum 42-kDa fragment of merozoite surface protein 1 (MSP142), a leading malaria vaccine candidate, at a high level in transgenic Arabidopsis seeds. We overcame hurdles of transcript and protein instabilities of MSP142 in plants by synthesizing a plant-optimized MSP142 cDNA and either targeting the recombinant protein to protein storage vacuoles or fusing it with a stable plant storage protein. An exceptional improvement in MSP142 expression, from an undetectable level to 5% of total extractable protein, was achieved with these combined strategies. Importantly, the plant-derived MSP142 maintains its natural antigenicity and can be recognized by immune sera from malaria-infected patients. Our results provide a strong basis for the development of a plant-based, low-cost malaria vaccine.Digital Object Identifier http://dx.doi.org/10.1111/j.1467-7652.2010.00526.x
机译:疟疾与贫困广泛相关,并且对疟疾的低成本疫苗非常适合在发展中国家实施综合疫苗接种计划。植物中的疟疾抗原的生产是一种有前途的方法,但它的发展已经受到植物细胞中抗原的不良表达的阻碍。在本研究中,我们将植物种子视为低成本的疫苗生产平台,并成功地表达了Merozoite表面蛋白1的疟原虫(Malozoite表面蛋白1的42-KDA片段)(MSP1 42 )是一种在转基因拟南芥中的高水平的疟疾疫苗候选者,种子。通过合成植物优化的 <亚> 42 42℃,我们通过植物中的转录物和蛋白质稳定性的障碍和植物中的MSP1 42 的障碍。并靶向重组蛋白至蛋白质储存液泡或用稳定的植物储存蛋白熔化它。通过这些组合策略实现了MSP1 42 表达的特殊改善,从未检测到总可提取蛋白的5%。重要的是,植物衍生的MSP1 42 保持其天然抗原性,并且可以通过免疫血清从疟疾感染患者识别。我们的结果为发展植物,低成本疟疾疫苗的发展提供了强有力的基础。目的对象标识符http://dx.doi.org/10.1111/j.1467-7652.2010.00526.x

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