Optimal SpCas9- and SaCas9-mediated gene editing by enhancing gRNA transcript levels through scaffold poly-T tract reduction.

IF 3.7 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY BMC Genomics Pub Date : 2025-02-12 DOI:10.1186/s12864-025-11317-2
Yu C J Chey, Luke Gierus, Caleb Lushington, Jayshen C Arudkumar, Ashleigh B Geiger, Lachlan G Staker, Louise J Robertson, Chandran Pfitzner, Jesse G Kennedy, Ryan H B Lee, Gelshan I Godahewa, Fatwa Adikusuma, Paul Q Thomas
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Abstract

Ensuring sufficient gRNA transcript levels is critical for obtaining optimal CRISPR-Cas9 gene editing efficiency. The standard gRNA scaffold contains a sequence of four thymine nucleotides (4T), which is known to inhibit transcription from Pol III promoters such as the U6 promoter. Our study showed that using standard plasmid transfection protocols, the presence of these 4Ts did not significantly affect editing efficiency, as most of the gRNAs tested (55 gRNAs) achieved near-perfect editing outcomes. We observed that gRNAs with lower activity were T-rich and had reduced gRNA transcript levels. However, this issue can be effectively resolved by increasing transcript levels, which can be readily achieved by shortening the 4T sequences. In this study, we demonstrated this by modifying the sequences to 3TC. Although the 3TC scaffold modification did not improve editing efficiency for already efficient gRNAs when high vector quantities were available, it proved highly beneficial under conditions of limited vector availability, where the 3TC scaffold yielded higher editing efficiency. Additionally, we demonstrated that the 3TC scaffold is compatible with SpCas9 high-fidelity variants and ABEmax base editing, enhancing their editing efficiency. Another commonly used natural Cas9 variant, SaCas9, also benefited from the 3TC scaffold sequence modification, which increased gRNA transcription and subsequently improved editing activity. This modification was applied to the EDIT-101 therapeutic strategy, where it demonstrated marked improvements in performance. This study highlights the importance of shortening the 4T sequences in the gRNA scaffold to optimize gRNA transcript expression for enhanced CRISPR-Cas9 gene editing efficiency. This optimization is particularly important for therapeutic applications, where the quantity of vector is often limited, ensuring more effective and optimal outcomes.

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通过支架多t道还原提高gRNA转录水平,优化SpCas9和sacas9介导的基因编辑。
确保足够的gRNA转录物水平是获得最佳CRISPR-Cas9基因编辑效率的关键。标准gRNA支架包含四个胸腺嘧啶核苷酸(4T)序列,已知其可抑制Pol III启动子(如U6启动子)的转录。我们的研究表明,使用标准质粒转染方案,这些4t的存在不会显著影响编辑效率,因为大多数测试的grna(55个grna)获得了近乎完美的编辑结果。我们观察到活性较低的gRNA富含t,并且gRNA转录水平降低。然而,这个问题可以通过增加转录物水平来有效解决,这可以通过缩短4T序列来实现。在这项研究中,我们通过将序列修饰为3TC来证明这一点。虽然3TC支架的修饰并没有在高载体数量时提高已经高效的grna的编辑效率,但在有限载体条件下,3TC支架的编辑效率更高。此外,我们证明了3TC支架与SpCas9高保真变体和ABEmax碱基编辑兼容,提高了它们的编辑效率。另一种常用的天然Cas9变体SaCas9也受益于3TC支架序列修饰,增加了gRNA转录,随后提高了编辑活性。该修饰应用于EDIT-101治疗策略,表现出明显的性能改善。本研究强调了缩短gRNA支架中的4T序列以优化gRNA转录物表达对于提高CRISPR-Cas9基因编辑效率的重要性。这种优化对于载体数量通常有限的治疗应用尤其重要,可确保更有效和最佳的结果。
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来源期刊
BMC Genomics
BMC Genomics 生物-生物工程与应用微生物
CiteScore
7.40
自引率
4.50%
发文量
769
审稿时长
6.4 months
期刊介绍: BMC Genomics is an open access, peer-reviewed journal that considers articles on all aspects of genome-scale analysis, functional genomics, and proteomics. BMC Genomics is part of the BMC series which publishes subject-specific journals focused on the needs of individual research communities across all areas of biology and medicine. We offer an efficient, fair and friendly peer review service, and are committed to publishing all sound science, provided that there is some advance in knowledge presented by the work.
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