Rigano M Manuela, Manna Carmela, Giulini Anna, Pedrazzini Emanuela, Capobianchi Maria, Castilletti Concetta, Di Caro Antonino, Ippolito Giuseppe, Beggio Paola, De Giuli Morghen Carlo, Monti Luigi, Vitale Alessandro, Cardi Teodoro
Department of Soil, Plant, Environmental and Animal Production Sciences, University of Naples 'Federico II', Via Università, Portici, Italy.
Plant Biotechnol J. 2009 Aug;7(6):577-91. doi: 10.1111/j.1467-7652.2009.00425.x. Epub 2009 Jun 8.
Orthopoxviruses (OPVs) have recently received increasing attention because of their potential use in bioterrorism and the occurrence of zoonotic OPV outbreaks, highlighting the need for the development of safe and cost-effective vaccines against smallpox and related viruses. In this respect, the production of subunit protein-based vaccines in transgenic plants is an attractive approach. For this purpose, the A27L immunogenic protein of vaccinia virus was expressed in tobacco using stable transformation of the nuclear or plastid genome. The vaccinia virus protein was expressed in the stroma of transplastomic plants in soluble form and accumulated to about 18% of total soluble protein (equivalent to approximately 1.7 mg/g fresh weight). This level of A27L accumulation was 500-fold higher than that in nuclear transformed plants, and did not decline during leaf development. Transplastomic plants showed a partial reduction in growth and were chlorotic, but reached maturity and set fertile seeds. Analysis by immunofluorescence microscopy indicated altered chlorophyll distribution. Chloroplast-synthesized A27L formed oligomers, suggesting correct folding and quaternary structure, and was recognized by serum from a patient recently infected by a zoonotic OPV. Taken together, these results demonstrate that chloroplasts are an attractive production vehicle for the expression of OPV subunit vaccines.
正痘病毒(OPV)近来受到越来越多的关注,这是因为它们在生物恐怖主义中的潜在用途以及人畜共患正痘病毒疫情的发生,凸显了开发针对天花及相关病毒的安全且具成本效益的疫苗的必要性。在这方面,利用转基因植物生产基于亚基蛋白的疫苗是一种颇具吸引力的方法。为此,通过核基因组或质体基因组的稳定转化,在烟草中表达了痘苗病毒的A27L免疫原性蛋白。痘苗病毒蛋白以可溶形式在转质体植物的基质中表达,并积累至总可溶性蛋白的约18%(相当于约1.7毫克/克鲜重)。A27L的这种积累水平比核转化植物中的高500倍,并且在叶片发育过程中没有下降。转质体植物生长出现部分减缓且呈褪绿现象,但能成熟并结出可育种子。免疫荧光显微镜分析表明叶绿素分布发生了改变。叶绿体合成的A27L形成了寡聚体,表明其折叠和四级结构正确,并且能被一名近期感染人畜共患正痘病毒的患者的血清识别。综上所述,这些结果表明叶绿体是表达正痘病毒亚基疫苗的一种颇具吸引力的生产载体。