Voinnet Olivier, Rivas Susana, Mestre Pere, Baulcombe David
The Sainsbury Laboratory, John Innes Centre, Colney Lane, Norwich NR4 7UH, UK.
Plant J. 2003 Mar;33(5):949-56. doi: 10.1046/j.1365-313x.2003.01676.x.
Transient gene expression is a fast, flexible and reproducible approach to high-level expression of useful proteins. In plants, recombinant strains of Agrobacterium tumefaciens can be used for transient expression of genes that have been inserted into the T-DNA region of the bacterial Ti plasmid. A bacterial culture is vacuum-infiltrated into leaves, and upon T-DNA transfer, there is ectopic expression of the gene of interest in the plant cells. However, the utility of the system is limited because the ectopic protein expression ceases after 2-3 days. Here, we show that post-transcriptional gene silencing (PTGS) is a major cause for this lack of efficiency. We describe a system based on co-expression of a viral-encoded suppressor of gene silencing, the p19 protein of tomato bushy stunt virus (TBSV), that prevents the onset of PTGS in the infiltrated tissues and allows high level of transient expression. Expression of a range of proteins was enhanced 50-folds or more in the presence of p19 so that protein purification could be achieved from as little as 100 mg of infiltrated leaf material. The effect of p19 was not saturated in cells that had received up to four individual T-DNAs and persisted until leaf senescence. Because of its simplicity and rapidity, we anticipate that the p19-enhanced expression system will have value in industrial production as well as a research tool for isolation and biochemical characterisation of a broad range of proteins without the need for the time-consuming regeneration of stably transformed plants.
瞬时基因表达是一种快速、灵活且可重复的方法,用于高水平表达有用蛋白质。在植物中,根癌农杆菌的重组菌株可用于瞬时表达已插入细菌Ti质粒T-DNA区域的基因。将细菌培养物真空渗入叶片,在T-DNA转移后,目标基因在植物细胞中异位表达。然而,该系统的实用性有限,因为异位蛋白表达在2-3天后就会停止。在这里,我们表明转录后基因沉默(PTGS)是导致这种效率低下的主要原因。我们描述了一种基于共表达病毒编码的基因沉默抑制因子——番茄丛矮病毒(TBSV)的p19蛋白的系统,该系统可防止渗入组织中PTGS的发生,并允许高水平的瞬时表达。在p19存在的情况下,一系列蛋白质的表达增强了50倍或更多,从而可以从低至100mg的渗入叶片材料中实现蛋白质纯化。p19的作用在接收多达四个单独T-DNA的细胞中并未饱和,并且一直持续到叶片衰老。由于其简单性和快速性,我们预计p19增强表达系统在工业生产以及作为一种研究工具方面都将具有价值,可用于分离和生化表征广泛的蛋白质,而无需耗时的稳定转化植物再生。