Plucinak Thomas M, Horken Kempton M, Jiang Wenzhi, Fostvedt Jessica, Nguyen Sanh Tan, Weeks Donald P
Department of Biochemistry, University of Nebraska, Lincoln, NE, 68588-0664, USA.
Plant J. 2015 May;82(4):717-29. doi: 10.1111/tpj.12844.
A significantly improved viral 2A peptide system for dependable high-level expression of dicistronic genes in Chlamydomonas reinhardtii has been developed. Data are presented demonstrating that use of an especially proficient 'extended FMDV 2A' coding region allows production of two independent protein products from a dicistronic gene with almost complete efficiency. Importantly, results are also presented that demonstrate the utility of this 2A system for efficient high-level expression of foreign genes in C. reinhardtii, which has not previously been reliably achievable in this algal model system. To expand the versatility of the 2A expression system, a number of commonly used selectable marker proteins were assessed for their compatibility with the extended FMDV 2A peptide. Additional experiments demonstrate the feasibility and utility of 2A-containing dicistronic systems that rely on a strong conditional promoter for transcriptional control and a low-expression marker gene for selection. This strategy allows easy and efficient delivery of genes of interest whose expression levels require regulation either to mitigate potential toxicity or allow differential expression under controlled experimental conditions. Finally, as an additional practical demonstration of the utility of the extended FMDV 2A system, confocal fluorescence microscopy is used to demonstrate that native and foreign proteins of interest bearing post-translational remnants of the extended FMDV 2A peptide localize correctly to various cellular compartments, including a striking demonstration of the almost exclusive localization of the Rubisco small subunit protein to the pyrenoid of the C. reinhardtii chloroplast in cells maintained under ambient CO2 concentrations.
已开发出一种显著改进的病毒2A肽系统,用于在莱茵衣藻中可靠地高水平表达双顺反子基因。所呈现的数据表明,使用特别高效的“扩展口蹄疫病毒2A”编码区能够几乎完全有效地从双顺反子基因产生两种独立的蛋白质产物。重要的是,还呈现了结果表明该2A系统在莱茵衣藻中高效高水平表达外源基因的效用,而此前在这个藻类模型系统中一直无法可靠实现这一点。为了扩展2A表达系统的通用性,评估了一些常用的选择标记蛋白与扩展口蹄疫病毒2A肽的兼容性。额外的实验证明了依赖强条件启动子进行转录控制和低表达标记基因进行选择的含2A双顺反子系统的可行性和效用。这种策略能够轻松高效地递送其表达水平需要调控以减轻潜在毒性或在受控实验条件下实现差异表达的目的基因。最后,作为扩展口蹄疫病毒2A系统效用的另一个实际证明,共聚焦荧光显微镜用于证明带有扩展口蹄疫病毒2A肽翻译后残基的天然和外源目的蛋白正确定位于各种细胞区室,包括在环境二氧化碳浓度下培养的细胞中,核酮糖-1,5-二磷酸羧化酶/加氧酶小亚基蛋白几乎排他性地定位于莱茵衣藻叶绿体的淀粉核的显著证明。