bioRxiv · 10.1101/2024.08.05.606586
An enhanced Eco1 retron editor enables precision genome engineering in human cells from a single-copy integrated lentivirus
Abstract
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 (xrRNA) 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.
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Cattle, M. A., Aguado, L. C., Sze, S., Wang, D. Y., Papagiannakopoulos, T., Smith, S., Rice, C. M., Schneider, W. M., Poirier, J. T.. 2024-08-05. An enhanced Eco1 retron editor enables precision genome engineering in human cells from a single-copy integrated lentivirus. https://doi.org/10.1101/2024.08.05.606586
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