Cattle Matthew A, Aguado Lauren C, Sze Samantha, Venkittu Sanjana, Wang Yueyang, Papagiannakopoulos Thales, Smith Susan, Rice Charles M, Schneider William M, Poirier John T
Vilcek Institute of Graduate Biomedical Sciences, NYU Grossman School of Medicine, New York, NY 10016, United States.
Laboratory of Virology and Infectious Disease, The Rockefeller University, New York, NY 10065, United States.
Nucleic Acids Res. 2025 Jul 19;53(14). doi: 10.1093/nar/gkaf716.
Retrons are a retroelement class found in diverse prokaryotes that can be adapted to augment CRISPR-Cas9 genome engineering technology to efficiently rewrite short stretches of genetic information in bacteria and yeast. However, efficiency in human cells has been limited by unknown factors. We identified non-coding RNA (ncRNA) instability and impaired Cas9 activity due to 5' sgRNA extension as key contributors to low retron editor efficiency in human cells. We re-engineered the Eco1 ncRNA to incorporate an exoribonuclease-resistant RNA pseudoknot from the Zika virus 3' UTR and devised an RNA processing strategy using Csy4 ribonuclease to minimize 5' sgRNA extension. This strategy increased steady-state ncRNA levels and rescued sgRNA activity, leading to increased templated repair. This work reveals a previously unappreciated role for ncRNA stability in retron editor efficiency in human cells and presents an enhanced Eco1 retron editor capable of precise genome editing in human cells from a single integrated lentivirus and, in the context of the nCas9 H840A nickase, without creating double-strand breaks.
反转录子是在多种原核生物中发现的一类反转录元件,可用于改进CRISPR-Cas9基因组工程技术,从而在细菌和酵母中高效重写短片段遗传信息。然而,在人类细胞中的效率一直受到未知因素的限制。我们发现非编码RNA(ncRNA)的不稳定性以及由于5' sgRNA延伸导致的Cas9活性受损是人类细胞中反转录子编辑器效率低下的关键因素。我们对Eco1 ncRNA进行了重新设计,使其包含来自寨卡病毒3' UTR的抗外切核糖核酸酶的RNA假结,并设计了一种使用Csy4核糖核酸酶的RNA加工策略,以尽量减少5' sgRNA的延伸。该策略提高了ncRNA的稳态水平并挽救了sgRNA的活性,从而增加了模板修复。这项工作揭示了ncRNA稳定性在人类细胞中反转录子编辑器效率方面以前未被认识到的作用,并展示了一种增强型Eco1反转录子编辑器,该编辑器能够通过单个整合慢病毒在人类细胞中进行精确的基因组编辑,并且在nCas9 H840A切口酶的情况下,不会产生双链断裂。