Sainsbury Frank, Thuenemann Eva C, Lomonossoff George P
Department of Biological Chemistry, John Innes Centre, Norwich, UK.
Plant Biotechnol J. 2009 Sep;7(7):682-93. doi: 10.1111/j.1467-7652.2009.00434.x. Epub 2009 Jul 17.
Agro-infiltration of leaf tissue with binary vectors harbouring a sequence of interest is a rapid method of expressing proteins in plants. It has recently been shown that flanking the sequence to be expressed with a modified 5'-untranslated region (UTR) and the 3'-UTR from Cowpea mosaic virus (CPMV) RNA-2 (CPMV-HT) within the binary vector pBINPLUS greatly enhances the level of expression that can be achieved [Sainsbury, F. and Lomonossoff, G.P. (2008)Plant Physiol. 148, 1212-1218]. To exploit this finding, a series of small binary vectors tailored for transient expression (termed the pEAQ vectors) has been created. In these, more than 7 kb of non-essential sequence was removed from the pBINPLUS backbone and T-DNA region, and unique restriction sites were introduced to allow for accommodation of multiple expression cassettes, including that for a suppressor of silencing, on the same plasmid. These vectors allow the high-level simultaneous expression of multiple polypeptides from a single plasmid within a few days. Furthermore, vectors have been developed which allow the direct cloning of genes into the binary plasmid by both restriction enzyme-based cloning and GATEWAY recombination. In both cases, N- or C-terminal histidine tags may be fused to the target sequence as required. These vectors provide an easy and quick tool for the production of milligram quantities of recombinant proteins from plants with standard plant research techniques at a bench-top scale.
用携带目标序列的双元载体对叶片组织进行农杆菌浸润是在植物中表达蛋白质的一种快速方法。最近研究表明,在双元载体pBINPLUS中,将要表达的序列两侧接上来自豇豆花叶病毒(CPMV)RNA-2的修饰5′非翻译区(UTR)和3′UTR(CPMV-HT),可大大提高表达水平[Sainsbury, F.和Lomonossoff, G.P.(2008)Plant Physiol. 148, 1212 - 1218]。为利用这一发现,构建了一系列为瞬时表达量身定制的小型双元载体(称为pEAQ载体)。在这些载体中,从pBINPLUS骨架和T-DNA区域去除了超过7 kb的非必需序列,并引入了独特的限制性酶切位点,以便在同一质粒上容纳多个表达盒,包括沉默抑制子的表达盒。这些载体能在几天内从单个质粒中同时高水平表达多种多肽。此外,还开发了一些载体,允许通过基于限制性内切酶的克隆和GATEWAY重组将基因直接克隆到双元质粒中。在这两种情况下,可根据需要将N端或C端组氨酸标签融合到目标序列上。这些载体为利用标准植物研究技术在台式规模上从植物中生产毫克级重组蛋白提供了一种简便快捷的工具。