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使用纳米孔直接 RNA 测序优化基因治疗载体的质量控制方案。

An optimized protocol for quality control of gene therapy vectors using nanopore direct RNA sequencing.

机构信息

Walter and Eliza Hall Institute of Medical Research, 1G Royal Parade, Parkville, Victoria 3052, Australia;

CSL Behring, Research, CH-3014 Bern, Switzerland.

出版信息

Genome Res. 2024 Nov 20;34(11):1966-1975. doi: 10.1101/gr.279405.124.

Abstract

Despite recent advances made toward improving the efficacy of lentiviral gene therapies, a sizeable proportion of produced vector contains an incomplete and thus potentially nonfunctional RNA genome. This can undermine gene delivery by the lentivirus as well as increase manufacturing costs and must be improved to facilitate the widespread clinical implementation of lentiviral gene therapies. Here, we compare three long-read sequencing technologies for their ability to detect issues in vector design and determine nanopore direct RNA sequencing to be the most powerful. We show how this approach identifies and quantifies incomplete RNA caused by cryptic splicing and polyadenylation sites, including a potential cryptic polyadenylation site in the widely used Woodchuck Hepatitis Virus Posttranscriptional Regulatory Element (WPRE). Using artificial polyadenylation of the lentiviral RNA, we also identify multiple hairpin-associated truncations in the analyzed lentiviral vectors (LVs), which account for most of the detected RNA fragments. Finally, we show that these insights can be used for the optimization of LV design. In summary, nanopore direct RNA sequencing is a powerful tool for the quality control and optimization of LVs, which may help to improve lentivirus manufacturing and thus the development of higher quality lentiviral gene therapies.

摘要

尽管最近在提高慢病毒基因治疗的疗效方面取得了进展,但所产生的载体中仍有相当一部分含有不完整的、因此可能无功能的 RNA 基因组。这会削弱慢病毒的基因传递,并增加制造成本,因此必须加以改进,以促进慢病毒基因治疗的广泛临床应用。在这里,我们比较了三种长读测序技术在检测载体设计问题方面的能力,结果表明纳米孔直接 RNA 测序的效果最强。我们展示了这种方法如何识别和量化由隐秘剪接和聚腺苷酸化位点引起的不完整 RNA,包括广泛使用的 Woodchuck Hepatitis Virus Posttranscriptional Regulatory Element (WPRE) 中的一个潜在隐秘聚腺苷酸化位点。通过对慢病毒 RNA 进行人工聚腺苷酸化,我们还在分析的慢病毒载体 (LV) 中鉴定出多个与发夹相关的截断,这些截断占检测到的 RNA 片段的大部分。最后,我们表明这些见解可用于优化 LV 设计。总之,纳米孔直接 RNA 测序是一种强大的 LV 质量控制和优化工具,它可能有助于提高慢病毒的制造水平,从而开发出更高质量的慢病毒基因治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de07/11610601/6002fdc6073a/1966f01.jpg

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