Biological Science Research Center, Southwest University, Chongqing, 400715, People's Republic of China.
Chongqing Key Laboratory of Sericultural Science, Southwest University, Chongqing, 400715, People's Republic of China.
Mol Genet Genomics. 2019 Aug;294(4):849-859. doi: 10.1007/s00438-019-01534-2. Epub 2019 Mar 20.
The multigene expression system is highly attractive to co-express multiple genes or multi-subunit complex-based genes for their functional studies, and in gene therapy and visual tracking of expressed proteins. However, the current multiple gene co-expression strategies usually suffer from severe inefficiency and unbalanced expression of multiple genes. Here, we report on an improved 2A self-cleaving peptide (2A)-based multigene expression system (2A-MGES), by introducing an optimized Kozak region (Ck) and altering the gene arrangement, both of which contributed to the efficient expression of two fluorescent protein genes in silkworm. By co-expressing DsRed and EGFP genes in insect cells and silkworms, the potent Ck was first found to improve the translation efficiency of downstream genes, and the expression of the flanking genes of 2A were improved by altering the gene arrangement in 2A-MGES. Moreover, we showed that combining Ck and an optimized gene arrangement in 2A-MGES could synergistically improve the expression of genes in the cell. Further, these two flanking genes, regulated by modified 2A-MGES, were further co-expressed in the middle silk gland and secreted into the cocoon, and both achieved efficient expression in the transgenic silkworms and their cocoons. These results suggested that the modified Ck-2A-MGES will be a potent tool for multiple gene expression, for studies of their functions, and their applications in insect species.
多基因表达系统对于功能研究、基因治疗和表达蛋白的可视化追踪非常有吸引力,因为它可以同时表达多个基因或多亚基复合物基因为一体。然而,目前的多基因共表达策略通常存在严重的效率低下和多个基因表达不平衡的问题。在这里,我们报告了一种改进的 2A 自切割肽(2A)-基于多基因表达系统(2A-MGES),通过引入优化的 Kozak 区(Ck)和改变基因排列,这两者都有助于在蚕中高效表达两个荧光蛋白基因。通过在昆虫细胞和蚕中共同表达 DsRed 和 EGFP 基因,我们首次发现强 Ck 可以提高下游基因的翻译效率,并且通过改变 2A-MGES 中的基因排列,可以提高 2A 侧翼基因的表达。此外,我们表明,在 2A-MGES 中结合 Ck 和优化的基因排列可以协同提高细胞中基因的表达。此外,这两个受修饰的 2A-MGES 调控的侧翼基因在中丝腺中进一步共表达,并分泌到茧中,在转基因蚕及其茧中均实现了高效表达。这些结果表明,修饰后的 Ck-2A-MGES 将成为多基因表达的有力工具,可用于研究其功能,并应用于昆虫物种。