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Production of dengue virus envelope protein domain III-based antigens in tobacco chloroplasts using inducible and constitutive expression systems

机译:使用诱导型和组成型表达系统在烟草叶绿体中生产登革热病毒包膜蛋白结构域III的抗原

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Dengue fever is a disease in many parts of the tropics and subtropics and about half the world's population is at risk of infection according to the World Health Organization. Dengue is caused by any of the four related dengue virus serotypes DEN-1, -2, -3 and -4, which are transmitted to people by Aedes aegypti mosquitoes. Currently there is only one vaccine (Dengvaxia(A (R))) available (limited to a few countries) on the market since 2015 after half a century's intensive efforts. Affordable and accessible vaccines against dengue are hence still urgently needed. The dengue envelop protein domain III (EDIII), which is capable of eliciting serotype-specific neutralizing antibodies, has become the focus for subunit vaccine development. To contribute to the development of an accessible and affordable dengue vaccine, in the current study we have used plant-based vaccine production systems to generate a dengue subunit vaccine candidate in tobacco. Chloroplast genome engineering was applied to express serotype-specific recombinant EDIII proteins in tobacco chloroplasts using both constitutive and ethanol-inducible expression systems. Expression of a tetravalent antigen fusion construct combining EDIII polypeptides from all four serotypes was also attempted. Transplastomic EDIII-expressing tobacco lines were obtained and homoplasmy was verified by Southern blot analysis. Northern blot analyses showed expression of EDIII antigen-encoding genes. EDIII protein accumulation levels varied for the different recombinant EDIII proteins and the different expression systems, and reached between 0.8 and 1.6 % of total cellular protein. Our study demonstrates the suitability of the chloroplast compartment as a production site for an EDIII-based vaccine candidate against dengue fever and presents a Gateway(A (R)) plastid transformation vector for inducible transgene expression.
机译:根据世界卫生组织的资料,登革热在热带和亚热带的许多地方都是一种疾病,全世界约有一半的人口处于感染的危险中。登革热是由四种相关的登革热病毒血清型DEN-1,-2,-3和-4中的任一种引起的,这些血清型是由埃及伊蚊传播的。经过半个多世纪的不懈努力,自2015年以来,目前市场上仅有一种疫苗(Dengvaxia(A))(仅限于少数国家/地区)投放市场。因此,仍然迫切需要负担得起且容易获得的抗登革热疫苗。能够引发血清型特异性中和抗体的登革热信封蛋白结构域III(EDIII)已成为亚单位疫苗开发的重点。为促进可负担得起的登革热疫苗的开发,在当前研究中,我们已使用基于植物的疫苗生产系统在烟草中产生登革热亚单位疫苗候选物。叶绿体基因组工程应用组成型和乙醇诱导型表达系统,在烟草叶绿体中表达血清型特异性重组EDIII蛋白。还尝试了表达来自所有四种血清型的EDIII多肽的四价抗原融合构建体的表达。获得表达质体表达EDIII的烟草系,并通过Southern印迹分析验证了同质性。 Northern印迹分析显示EDIII抗原编码基因的表达。 EDIII蛋白的积累水平因不同的重组EDIII蛋白和不同的表达系统而异,达到细胞总蛋白的0.8%至1.6%。我们的研究表明叶绿体区室作为针对基于登革热的EDIII候选疫苗的生产场所的适用性,并提出了可诱导转基因表达的Gateway(A)质体转化载体。

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