Cell Culture and Fermentation Sciences, Biopharmaceutical Development, R&D, AstraZeneca, Cambridge, UK.
MAbs. 2023 Jan-Dec;15(1):2242548. doi: 10.1080/19420862.2023.2242548.
Introns are included in genes encoding therapeutic proteins for their well-documented function of boosting expression. However, mis-splicing of introns in recombinant immunoglobulin (IgG) heavy chain (HC) transcripts can produce amino acid sequence product variants. These variants can affect product quality; therefore, purification process optimization may be needed to remove them, or if they cannot be removed, then in-depth characterization must be carried out to understand their effects on biological activity. In this study, HC transgene engineering approaches were investigated and were successful in significantly reducing the previously identified IgG HC splice variants to <0.5%. Subsequently, a comprehensive evaluation was conducted to understand the influence of the different introns in the HC genes on the expression of recombinant biotherapeutic antibodies. The data revealed an unexpected cooperation between specific introns for efficient splicing, where intron retention led to significant reductions in IgG expression of up to 75% for some intron combinations. Furthermore, it was shown that HC introns could be fully removed without significantly affecting productivity. This work paves the way for future biotherapeutic antibody transgene design with regard to inclusion of HC introns. By removing unnecessary introns, transgene mRNA transcript will no longer be mis-spliced, thereby eliminating HC splice variants and improving antibody product quality.
内含子被包含在编码治疗性蛋白的基因中,因为它们具有增强表达的良好记录功能。然而,重组免疫球蛋白 (IgG) 重链 (HC) 转录物中内含子的错误剪接会产生氨基酸序列产物变体。这些变体可能会影响产品质量;因此,可能需要优化纯化工艺以去除它们,或者如果无法去除,则必须进行深入的表征以了解它们对生物活性的影响。在这项研究中,研究了 HC 转基因工程方法,这些方法成功地将先前鉴定的 IgG HC 剪接变体显著减少到 <0.5%。随后,进行了全面评估,以了解 HC 基因中的不同内含子对重组生物治疗性抗体表达的影响。数据显示,特定内含子之间存在一种意想不到的有效剪接合作,其中内含子保留导致某些内含子组合的 IgG 表达显著降低高达 75%。此外,还表明可以完全去除 HC 内含子而不会显著影响生产力。这项工作为未来的生物治疗性抗体转基因设计中包含 HC 内含子铺平了道路。通过去除不必要的内含子,转基因 mRNA 转录物将不再发生错误剪接,从而消除 HC 剪接变体并提高抗体产品质量。