Institute of Infectious Disease and Molecular Medicine, Faculty of Health Sciences, University of Cape Town, Observatory, South Africa.
Plant Biotechnol J. 2010 Jan;8(1):38-46. doi: 10.1111/j.1467-7652.2009.00462.x. Epub 2009 Nov 19.
We constructed a novel autonomously replicating gene expression shuttle vector, with the aim of developing a system for transiently expressing proteins at levels useful for commercial production of vaccines and other proteins in plants. The vector, pRIC, is based on the mild strain of the geminivirus Bean yellow dwarf virus (BeYDV-m) and is replicationally released into plant cells from a recombinant Agrobacterium tumefaciens Ti plasmid. pRIC differs from most other geminivirus-based vectors in that the BeYDV replication-associated elements were included in cis rather than from a co-transfected plasmid, while the BeYDV capsid protein (CP) and movement protein (MP) genes were replaced by an antigen encoding transgene expression cassette derived from the non-replicating A. tumefaciens vector, pTRAc. We tested vector efficacy in Nicotiana benthamiana by comparing transient cytoplasmic expression between pRIC and pTRAc constructs encoding either enhanced green fluorescent protein (EGFP) or the subunit vaccine antigens, human papillomavirus subtype 16 (HPV-16) major CP L1 and human immunodeficiency virus subtype C p24 antigen. The pRIC constructs were amplified in planta by up to two orders of magnitude by replication, while 50% more HPV-16 L1 and three- to seven-fold more EGFP and HIV-1 p24 were expressed from pRIC than from pTRAc. Vector replication was shown to be correlated with increased protein expression. We anticipate that this new high-yielding plant expression vector will contribute towards the development of a viable plant production platform for vaccine candidates and other pharmaceuticals.
我们构建了一种新型自主复制的基因表达穿梭载体,旨在开发一种在植物中瞬时表达蛋白的系统,其水平可用于商业生产疫苗和其他蛋白。该载体 pRIC 基于双生病毒 Bean yellow dwarf virus(BeYDV-m)的弱毒株,通过重组农杆菌 Ti 质粒复制释放到植物细胞中。pRIC 与大多数其他基于双生病毒的载体不同,因为 BeYDV 复制相关元件是顺式的,而不是来自共转染的质粒,而 BeYDV 衣壳蛋白(CP)和运动蛋白(MP)基因则被来自非复制农杆菌载体 pTRAc 的抗原编码转基因表达盒取代。我们通过比较在 Nicotiana benthamiana 中转录瞬时细胞质表达,来测试载体的效力,其中 pRIC 和 pTRAc 载体编码增强型绿色荧光蛋白(EGFP)或亚单位疫苗抗原,即人乳头瘤病毒 16 型(HPV-16)主要 CP L1 和人类免疫缺陷病毒 1 型 C 型 p24 抗原。pRIC 构建体通过复制在植物中扩增了多达两个数量级,而 HPV-16 L1 的表达量比 pTRAc 高出 50%,EGFP 和 HIV-1 p24 的表达量则高出 3 到 7 倍。证明了载体的复制与蛋白表达的增加有关。我们预计,这种新型高效植物表达载体将有助于开发可行的疫苗候选物和其他药物的植物生产平台。