Targeted DNA ADP-ribosylation triggers templated repair in bacteria and base mutagenesis in eukaryotes

靶向 DNA ADP 核糖基化引发细菌模板修复和真核生物碱基诱变

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作者:Constantinos Patinios, Darshana Gupta, Harris V Bassett, Scott P Collins, Charlotte Kamm, Anuja Kibe, Yanyan Wang, Chengsong Zhao, Katie Vollen, Christophe Toussaint, Kathryn M Polkoff, Thuan Nguyen, Irene Calvin, Angela Migur, Ibrahim S Al'Abri, Tatjana Achmedov, Alessandro Del Re, Antoine-Emmanuel

Abstract

Base editors create precise genomic edits by directing nucleobase deamination or removal without inducing double-stranded DNA breaks. However, a vast chemical space of other DNA modifications remains to be explored for genome editing. Here, we harness the bacterial anti-phage toxin DarT2 to append ADP-ribosyl moieties to DNA, unlocking distinct editing outcomes in bacteria versus eukaryotes. Fusing an attenuated DarT2 to a Cas9 nickase, we program site-specific ADP-ribosylation of thymines within a target DNA sequence. In tested bacteria, targeting drives efficient homologous recombination in tested bacteria, offering flexible and scar-free genome editing without base replacement nor counterselection. In tested eukaryotes including yeast, plants and human cells, targeting drives substitution of the modified thymine to adenine or a mixture of adenine and cytosine with limited insertions or deletions, offering edits inaccessible to current base editors. Altogether, our approach, called append editing, leverages the addition of a chemical moiety to DNA to expand current modalities for precision gene editing.

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