通过减少错配 pegRNA 相互作用来增强 CRISPR 先导编辑。
Enhancing CRISPR prime editing by reducing misfolded pegRNA interactions.
机构信息
Cardiovascular Research Center, Massachusetts General Hospital, Charlestown, United States.
Department of Medicine, Harvard Medical School, Boston, United States.
出版信息
Elife. 2024 Jun 7;12:RP90948. doi: 10.7554/eLife.90948.
CRISPR prime editing () requires a Cas9 nickase-reverse transcriptase fusion protein (known as PE2) and a prime editing guide RNA (), an extended version of a standard guide RNA () that both specifies the intended target genomic sequence and encodes the desired genetic edit. Here, we show that sequence complementarity between the 5' and the 3' regions of a pegRNA can negatively impact its ability to complex with Cas9, thereby potentially reducing PE efficiency. We demonstrate this limitation can be overcome by a simple pegRNA refolding procedure, which improved ribonucleoprotein-mediated PE efficiencies in zebrafish embryos by up to nearly 25-fold. Further gains in PE efficiencies of as much as sixfold could also be achieved by introducing point mutations designed to disrupt internal interactions within the pegRNA. Our work defines simple strategies that can be implemented to improve the efficiency of PE.
CRISPR 先导编辑(prime editing)需要一种 Cas9 切口酶 - 逆转录酶融合蛋白(称为 PE2)和一种先导编辑向导 RNA(prime editing guide RNA,pegRNA),pegRNA 是标准向导 RNA 的扩展版本,既能指定预期的靶基因组序列,又能编码所需的遗传编辑。在这里,我们表明 pegRNA 的 5' 和 3' 区域之间的序列互补性会对其与 Cas9 复合物的能力产生负面影响,从而可能降低 PE 的效率。我们证明,通过一种简单的 pegRNA 重折叠程序可以克服这一限制,该程序将斑马鱼胚胎中核糖核蛋白介导的 PE 效率提高了近 25 倍。通过引入旨在破坏 pegRNA 内部相互作用的点突变,还可以进一步提高 PE 效率,最高可达六倍。我们的工作定义了可以实施的简单策略,以提高 PE 的效率。