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Dual base editor catalyzes both cytosine and adenine base conversions in human cells
Nature Biotechnology, 2020Although base editors are useful tools for precise genome editing, current base editors can only convert either adenines or cytosines. We developed a dual adenine and cytosine base editor (A&C-BEmax) by fusing both deaminases with a Cas9 nickase to achieve C-to-T and A-to-G conversions at the same target site. Compared to single base editors, A&C-BEmax'
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Precise mutagenesis in zebrafish using cytosine base editors
Nature Protocols, 2023Base editing is a powerful CRISPR-based technology for introducing precise substitutions into the genome. This technology greatly advances mutagenesis possibilities in vivo, particularly in zebrafish, for which the generation of precise point mutations is still challenging.
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Germline Editing of Drosophila Using CRISPR-Cas9-Based Cytosine and Adenine Base Editors
The CRISPR Journal, 2023Target-AID, BE3, and ABE7.10 base editors fused to the catalytically modified Cas9 and xCas9(3.7) were tested for germline editing of the fruit fly Drosophila melanogaster . We developed a guide RNA-expressing construct, white- 4gRNA, targeting splice ...
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Adenine base editors catalyze cytosine conversions in human cells
Nature Biotechnology, 2019Adenine base editors comprise an adenosine deaminase, evolved in vitro, and a Cas9 nickase. Here, we show that in addition to converting adenine to guanine, adenine base editors also convert cytosine to guanine or thymine in a narrow editing window (positions 5-7) and in a confined TC*N sequence context.
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