Yusibov V, Shivprasad S, Turpen T H, Dawson W, Koprowski H
Biotechnology Foundation Laboratories, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Curr Top Microbiol Immunol. 1999;240:81-94. doi: 10.1007/978-3-642-60234-4_4.
The potential of plant virus-based transient expression vectors is substantial. One objective is the production of large quantities of foreign peptides or proteins. At least one commercial group (Biosource Technologies) is producing large quantities of product in the field, has built factories to process truck-loads of material and soon expects to market virus-generated products. In the laboratory, large amounts of protein have been produced for structural or biochemical analyses. An important aspect of producing large amounts of a protein or peptide is to make the product easily purifiable. This has been done by attaching peptides or proteins to easily purified units such as virion particles or by exporting proteins to the apoplast so that purification begins with a highly enriched product. For plant molecular biology, virus-based vectors have been useful in identifying previously unknown genes by overexpression or silencing or by expression in different genotypes. Also, foreign peptides fused to virions are being used as immunogens for development of antisera for experimental use or as injected or edible vaccines for medical use. As with liposomes and microcapsules, plant cells and plant viruses are also expected to provide natural protection for the passage of antigen through the gastrointestinal tract. Perhaps the greatest advantage of plant virus-based transient expression vectors is their host, plants. For the production of large amounts of commercial products, plants are one of the most economical and productive sources of biomass. They also present the advantages of lack of contamination with animal pathogens, relative ease of genetic manipulation and the presence eukaryotic protein modification machinery.
基于植物病毒的瞬时表达载体潜力巨大。一个目标是大量生产外源肽或蛋白质。至少有一个商业集团(生物源技术公司)正在田间大量生产产品,已建造工厂来处理成卡车装载的材料,并且很快有望将病毒产生的产品推向市场。在实验室中,已生产出大量蛋白质用于结构或生化分析。大量生产蛋白质或肽的一个重要方面是使产品易于纯化。这可以通过将肽或蛋白质连接到易于纯化的单元(如病毒粒子)上,或者通过将蛋白质输出到质外体,以便从高度富集的产品开始纯化来实现。对于植物分子生物学,基于病毒的载体已被用于通过过表达或沉默或在不同基因型中表达来鉴定先前未知的基因。此外,与病毒粒子融合的外源肽正被用作免疫原,用于开发实验用抗血清或用作医用注射疫苗或可食用疫苗。与脂质体和微胶囊一样,植物细胞和植物病毒也有望为抗原通过胃肠道提供天然保护。基于植物病毒的瞬时表达载体的最大优势或许在于其宿主——植物。对于大量商业产品的生产而言,植物是最经济且产量最高的生物质来源之一。它们还具有不受动物病原体污染、相对易于基因操作以及存在真核蛋白质修饰机制等优势。