Department of Regulation of Genetic Processes, Institute of Molecular and Cellular Biology, SB RAS, 630090 Novosibirsk, Russia.
Laboratory of Biotechnology, Novosibirsk State Agrarian University, 630039 Novosibirsk, Russia.
Int J Mol Sci. 2022 Dec 7;23(24):15485. doi: 10.3390/ijms232415485.
Compared to transcription initiation, much less is known about transcription termination. In particular, large-scale mutagenesis studies have, so far, primarily concentrated on promoter and enhancer, but not terminator sequences. Here, we used a massively parallel reporter assay (MPRA) to systematically analyze the influence of short (8 bp) sequence variants (mutations) located downstream of the polyadenylation signal (PAS) on the steady-state mRNA level of the upstream gene, employing an reporter and human HEK293T cells as a model system. In total, we evaluated 227,755 mutations located at different overlapping positions within +17..+56 bp downstream of the PAS for their ability to regulate the reporter gene expression. We found that the positions +17..+44 bp downstream of the PAS are more essential for gene upregulation than those located more distal to the PAS, and that the mutation sequences ensuring high levels of mRNA expression are extremely T-rich. Next, we validated the positive effect of a couple of mutations identified in the MPRA screening on the and luciferase protein expression. The most promising mutation increased the expression of the reporter proteins 13-fold and sevenfold on average in HEK293T and CHO cells, respectively. Overall, these findings might be useful for further improving the efficiency of production of therapeutic products, e.g., recombinant antibodies.
与转录起始相比,人们对转录终止的了解要少得多。特别是,到目前为止,大规模的诱变研究主要集中在启动子和增强子上,而不是终止子序列。在这里,我们使用大规模平行报告基因分析(MPRA)系统地分析了位于多聚腺苷酸化信号(PAS)下游的短(8 个碱基)序列变异(突变)对上游基因稳态 mRNA 水平的影响,使用了一个 报告基因和人 HEK293T 细胞作为模型系统。总共,我们评估了位于 PAS 下游+17..+56 bp 不同重叠位置的 227,755 个突变,以确定它们调节报告基因表达的能力。我们发现 PAS 下游+17..+44 bp 的位置比 PAS 更远的位置对于基因上调更为重要,并且确保高水平 的 mRNA 表达的突变序列富含 T。接下来,我们验证了在 MPRA 筛选中鉴定的几个突变对 和荧光素酶蛋白表达的积极影响。最有前途的突变分别使 HEK293T 和 CHO 细胞中报告蛋白的表达平均增加了 13 倍和 7 倍。总的来说,这些发现可能有助于进一步提高治疗产品(例如重组抗体)的生产效率。