Person: Doman, Jordan
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Publication Adenine Base Editing in an Adult Mouse Model of Tyrosinaemia
(Springer Science and Business Media LLC, 2019-02-25) Song, Chun-Qing; Jiang, Tingting; Richter, Michelle; Rhym, Luke H.; Koblan, Luke; Paz Zafra, Maria; Schatoff, Emma M.; Doman, Jordan; Cao, Yueying; Dow, Lukas E.; Zhu, Lihua Julie; Anderson, Daniel; Liu, David; Yin, Hao; Xue, WenUnlike traditional CRISPR-Cas9 homology-directed repair, base editing can correct point mutations without supplying a DNA-repair template. Here, we show in a mouse model of tyrosinemia that hydrodynamic tail-vein injection of plasmid DNA encoding the adenine base editor (ABE) and a single guide RNA can correct an A>G splice-site mutation. ABE treatment partially restored splicing, generated fumarylacetoacetate hydrolase (Fah)-positive hepatocytes in the liver, and rescued weight loss in the animals. We also generated Fah+ hepatocytes in the liver via lipid-nanoparticle-mediated delivery of chemically modified sgRNA and an mRNA of a codon-optimized base editor that displayed higher base-editing efficiency than the standard ABE. Our findings suggest that adenosine base editing can be used for the correction of genetic disease in adult animals.
Publication Efficient C•G-to-G•C base editors developed using CRISPRi screens, target-library analysis, and machine learning
(Springer Science and Business Media LLC, 2021-06-28) Koblan, Luke; Arbab, Mandana; Shen, Max; Hussmann, Jeffrey A.; Anzalone, Andrew; Doman, Jordan; Newby, Gregory; Yang, Dian; Mok, Beverly; Replogle, Joseph M.; Xu, Albert; Sisley, Tyler A.; Weissman, Jonathan S.; Adamson, Brittany; Liu, David