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Biorxiv : the Preprint Server for Biology|November 28, 2023
Proteome-wide base editor screens to assess phosphorylation site functionality in high-throughputPatrick H Kennedy, Amin Alborzian Deh Sheikh, Matthew Balakar, et al.Nature Communications|March 28, 2026
Small-molecule binding and sensing with a designed protein familyGyu Rie Lee, Samuel J Pellock, Christoffer Norn, et al.Nature Biomedical Engineering|April 17, 2023
Ex vivo prime editing of patient haematopoietic stem cells rescues sickle-cell disease phenotypes after engraftment in miceKelcee A Everette, Gregory A Newby, Rachel M Levine, et al.Nature Nanotechnology|May 23, 2024
Bone-marrow-homing lipid nanoparticles for genome editing in diseased and malignant haematopoietic stem cellsXizhen Lian, Sumanta Chatterjee, Yehui Sun, et al.Nature Nanotechnology|June 15, 2026
Efficient prime editing in vivo and in vitro using lipid nanoparticlesAllen Y Jiang, Ana Cristian, Dominique L Brooks, et al.Nature Methods|April 29, 2024
Post-translational modification-centric base editor screens to assess phosphorylation site functionality in high throughputPatrick H Kennedy, Amin Alborzian Deh Sheikh, Matthew Balakar, et al.Molecular Therapy : the Journal of the American Society of Gene Therapy|November 5, 2021
Disruption of HIV-1 co-receptors CCR5 and CXCR4 in primary human T cells and hematopoietic stem and progenitor cells using base editingFriederike Knipping, Gregory A Newby, Cindy R Eide, et al.Nature|January 7, 2021
In vivo base editing rescues Hutchinson-Gilford progeria syndrome in miceLuke W Koblan, Michael R Erdos, Christopher Wilson, et al.Nature Communications|July 31, 2025
GFP-on mouse model for interrogation of in vivo gene editingCarla Dib, Jack A Queenan, Leah Swartzrock, et al.Nature Communications|December 5, 2023
Shuttle peptide delivers base editor RNPs to rhesus monkey airway epithelial cells in vivoKatarina Kulhankova, Soumba Traore, Xue Cheng, et al.Pageof 31