利用新型 LbCas12a 变体提高人类细胞和植物中的基因组编辑效率。
Boosting genome editing efficiency in human cells and plants with novel LbCas12a variants.
机构信息
Integrated DNA Technologies, Coralville, IA, 52241, USA.
Current Address: Aera Therapeutics, 50 Northern Ave, Boston, MA, 02210, USA.
出版信息
Genome Biol. 2023 Apr 30;24(1):102. doi: 10.1186/s13059-023-02929-6.
BACKGROUND
Cas12a (formerly known as Cpf1), the class II type V CRISPR nuclease, has been widely used for genome editing in mammalian cells and plants due to its distinct characteristics from Cas9. Despite being one of the most robust Cas12a nucleases, LbCas12a in general is less efficient than SpCas9 for genome editing in human cells, animals, and plants.
RESULTS
To improve the editing efficiency of LbCas12a, we conduct saturation mutagenesis in E. coli and identify 1977 positive point mutations of LbCas12a. We selectively assess the editing efficiency of 56 LbCas12a variants in human cells, identifying an optimal LbCas12a variant (RVQ: G146R/R182V/E795Q) with the most robust editing activity. We further test LbCas12a-RV, LbCas12a-RRV, and LbCas12a-RVQ in plants and find LbCas12a-RV has robust editing activity in rice and tomato protoplasts. Interestingly, LbCas12a-RRV, resulting from the stacking of RV and D156R, displays improved editing efficiency in stably transformed rice and poplar plants, leading to up to 100% editing efficiency in T plants of both plant species. Moreover, this high-efficiency editing occurs even at the non-canonical TTV PAM sites.
CONCLUSIONS
Our results demonstrate that LbCas12a-RVQ is a powerful tool for genome editing in human cells while LbCas12a-RRV confers robust genome editing in plants. Our study reveals the tremendous potential of these LbCas12a variants for advancing precision genome editing applications across a wide range of organisms.
背景
Cas12a(以前称为 Cpf1)是一种 II 类 V 型 CRISPR 核酸酶,由于其与 Cas9 的不同特性,已被广泛用于哺乳动物细胞和植物的基因组编辑。尽管 LbCas12a 是最强大的 Cas12a 核酸酶之一,但总体而言,它在人类细胞、动物和植物中的基因组编辑效率不如 SpCas9 高。
结果
为了提高 LbCas12a 的编辑效率,我们在大肠杆菌中进行饱和突变,并鉴定出 1977 个 LbCas12a 的阳性点突变。我们选择性地评估了 56 种 LbCas12a 变体在人类细胞中的编辑效率,确定了一种最优的 LbCas12a 变体(RVQ:G146R/R182V/E795Q),具有最强的编辑活性。我们进一步在植物中测试了 LbCas12a-RV、LbCas12a-RRV 和 LbCas12a-RVQ,发现 LbCas12a-RV 在水稻和番茄原生质体中有很强的编辑活性。有趣的是,LbCas12a-RRV,由 RV 和 D156R 的堆叠而成,在稳定转化的水稻和杨树植物中显示出更高的编辑效率,导致两种植物的 T 植株的编辑效率高达 100%。此外,这种高效编辑甚至发生在非典型的 TTV PAM 位点。
结论
我们的结果表明,LbCas12a-RVQ 是人类细胞基因组编辑的有力工具,而 LbCas12a-RRV 则赋予了植物强大的基因组编辑能力。我们的研究揭示了这些 LbCas12a 变体在广泛的生物中进行精确基因组编辑应用的巨大潜力。