假结
清脆的
核糖核酸
计算生物学
基因组编辑
反式激活crRNA
核苷酸
核糖
基因
Cas9
化学
CRISPR干扰
生物
组合化学
生物化学
酶
作者
Eman A. Ageely,Ramadevi Chilamkurthy,Sunit Kumar Jana,Leonora Abdullahu,Daniel O’Reilly,Philip J. Jensik,Masad J. Damha,Keith T. Gagnon
标识
DOI:10.1038/s41467-021-26989-z
摘要
Abstract CRISPR-Cas12a is a leading technology for development of model organisms, therapeutics, and diagnostics. These applications could benefit from chemical modifications that stabilize or tune enzyme properties. Here we chemically modify ribonucleotides of the As Cas12a CRISPR RNA 5′ handle, a pseudoknot structure that mediates binding to Cas12a. Gene editing in human cells required retention of several native RNA residues corresponding to predicted 2′-hydroxyl contacts. Replacing these RNA residues with a variety of ribose-modified nucleotides revealed 2′-hydroxyl sensitivity. Modified 5′ pseudoknots with as little as six out of nineteen RNA residues, with phosphorothioate linkages at remaining RNA positions, yielded heavily modified pseudoknots with robust cell-based editing. High trans activity was usually preserved with cis activity. We show that the 5′ pseudoknot can tolerate near complete modification when design is guided by structural and chemical compatibility. Rules for modification of the 5′ pseudoknot should accelerate therapeutic development and be valuable for CRISPR-Cas12a diagnostics.
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