Chen Kai, Stahl Elizabeth C, Kang Min Hyung, Xu Bryant, Allen Ryan, Trinidad Marena, Doudna Jennifer A
bioRxiv. 2023 Nov 15:2023.11.15.567251. doi: 10.1101/2023.11.15.567251.
The delivery of CRISPR ribonucleoproteins (RNPs) for genome editing and has important advantages over other delivery methods, including reduced off-target and immunogenic effects . However, effective delivery of RNPs remains challenging in certain cell types due to low efficiency and cell toxicity. To address these issues, we engineered self-deliverable RNPs that can promote efficient cellular uptake and carry out robust genome editing without the need for helper materials or biomolecules. Screening of cell-penetrating peptides (CPPs) fused to CRISPR-Cas9 protein identified potent constructs capable of efficient genome editing of neural progenitor cells. Further engineering of these fusion proteins identified a C-terminal Cas9 fusion with three copies of A22p, a peptide derived from human semaphorin-3a, that exhibited substantially improved editing efficacy compared to other constructs. We found that self-deliverable Cas9 RNPs generated robust genome edits in clinically relevant genes when injected directly into the mouse striatum. Overall, self-deliverable Cas9 proteins provide a facile and effective platform for genome editing and .
用于基因组编辑的CRISPR核糖核蛋白(RNP)递送相比于其他递送方法具有重要优势,包括脱靶效应和免疫原性降低。然而,由于效率低下和细胞毒性,RNP在某些细胞类型中的有效递送仍然具有挑战性。为了解决这些问题,我们设计了可自我递送的RNP,其可以促进高效的细胞摄取并在无需辅助材料或生物分子的情况下进行强大的基因组编辑。对与CRISPR-Cas9蛋白融合的细胞穿透肽(CPP)进行筛选,确定了能够对神经祖细胞进行高效基因组编辑的有效构建体。对这些融合蛋白的进一步工程改造确定了一种C端Cas9与三个A22p拷贝的融合体,A22p是一种源自人类信号素3a的肽,与其他构建体相比,其编辑效果有显著改善。我们发现,当直接注射到小鼠纹状体中时,可自我递送的Cas9 RNP在临床相关基因中产生了强大的基因组编辑。总体而言,可自我递送的Cas9蛋白为基因组编辑提供了一个简便有效的平台。