Zauatbayeva Gulzat, Kulatay Tolganay, Ingirbay Bakytkali, Shakhmanova Zhanar, Keyer Viktoriya, Zaripov Mikhail, Zhumabekova Maral, Shustov Alexandr V
National Center for Biotechnology, 010000 Astana, Kazakhstan.
Institute of Theoretical and Experimental Biophysics, 142290 Pushchino, Russia.
Biomolecules. 2025 Feb 13;15(2):274. doi: 10.3390/biom15020274.
Transient gene expression (TGE) is commonly employed for protein production, but its reliance on plasmid transfection makes it challenging to scale up. In this paper, an alternative TGE method is presented, utilizing pseudoinfectious alphavirus as an expression vector. Pseudoinfectious viruses (PIV) and a replicable helper construct were derived from the genome of the Venezuelan equine encephalitis virus. The PIV carries a mutant capsid protein that prevents packaging into infectious particles, while the replicable helper encodes a wild-type capsid protein but lacks other viral structural proteins. Although PIV and the helper cannot independently spread infection, their combination results in increased titers in cell cultures, enabling easier scale-up of producing cultures. The PIV-driven production of a model protein outperforms that of alphavirus replicon vectors or simple plasmid vectors. Another described feature of the expression system is the modification to immobilized metal affinity chromatography (IMAC), allowing purification of His-tagged recombinant proteins from a conditioned medium in the presence of substances that can strip metal from the IMAC columns. The PIV-based expression system allows for the production of milligram quantities of recombinant proteins in static cultures, without the need for complex equipment such as bioreactors, and complies with regulatory requirements due to its distinction from common recombinant viruses.
瞬时基因表达(TGE)通常用于蛋白质生产,但其对质粒转染的依赖使其难以扩大规模。本文提出了一种替代的TGE方法,利用假感染性甲病毒作为表达载体。假感染性病毒(PIV)和可复制的辅助构建体源自委内瑞拉马脑炎病毒的基因组。PIV携带一种突变衣壳蛋白,可防止包装成感染性颗粒,而可复制的辅助构建体编码野生型衣壳蛋白,但缺乏其他病毒结构蛋白。虽然PIV和辅助构建体不能独立传播感染,但它们的组合会导致细胞培养物中的滴度增加,从而使生产培养物更容易扩大规模。PIV驱动的模型蛋白生产优于甲病毒复制子载体或简单质粒载体。该表达系统的另一个描述特征是对固定化金属亲和色谱(IMAC)的改进,允许在存在可从IMAC柱上剥离金属的物质的情况下,从条件培养基中纯化His标签重组蛋白。基于PIV的表达系统允许在静态培养物中生产毫克量的重组蛋白,无需生物反应器等复杂设备,并且由于其与常见重组病毒的区别而符合监管要求。