Su-Tobon Qiwen, Fan Jiayi, Goldstein Michael, Feeney Kevin, Ren Hongyuan, Autissier Patrick, Wang Peiyi, Huang Yingzi, Mohanty Udayan, Niu Jia
Department of Chemistry, Boston College, Chestnut Hill, MA, USA.
Department of Biology, Boston College, Chestnut Hill, MA, USA.
Nat Commun. 2025 Jan 11;16(1):595. doi: 10.1038/s41467-025-55957-0.
Recent advances in gene editing and precise regulation of gene expression based on CRISPR technologies have provided powerful tools for the understanding and manipulation of gene functions. Fusing RNA aptamers to the sgRNA of CRISPR can recruit cognate RNA-binding protein (RBP) effectors to target genomic sites, and the expression of sgRNA containing different RNA aptamers permit simultaneous multiplexed and multifunctional gene regulations. Here, we report an intracellular directed evolution platform for RNA aptamers against intracellularly expressed RBPs. We optimize a bacterial CRISPR-hybrid system coupled with FACS, and identified high affinity RNA aptamers orthogonal to existing aptamer-RBP pairs. Application of orthogonal aptamer-RBP pairs in multiplexed CRISPR allows effective simultaneous transcriptional activation and repression of endogenous genes in mammalian cells.
基于CRISPR技术的基因编辑和基因表达精确调控方面的最新进展,为理解和操纵基因功能提供了强大工具。将RNA适体与CRISPR的sgRNA融合,可以招募同源RNA结合蛋白(RBP)效应物至靶向基因组位点,且含有不同RNA适体的sgRNA的表达允许同时进行多重和多功能基因调控。在此,我们报道了一个针对细胞内表达的RBPs的RNA适体的细胞内定向进化平台。我们优化了一个与荧光激活细胞分选(FACS)相结合的细菌CRISPR杂交系统,并鉴定出与现有适体-RBP对正交的高亲和力RNA适体。正交适体-RBP对在多重CRISPR中的应用允许在哺乳动物细胞中对内源基因进行有效的同时转录激活和抑制。