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Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|February 11, 2026
Evolution of Prime Editing: Enhancing Efficiency and Expanding CapacityJihyeon Yu, Ju-Chan Park, Heesoo Uhm, et al.Molecular Brain|December 6, 2017
Increased PKMζ activity impedes lateral movement of GluA2-containing AMPA receptorsNam-Kyung Yu, Heesoo Uhm, Jaehoon Shim, et al.Cell|August 6, 2025
AI-generated MLH1 small binder improves prime editing efficiencyJu-Chan Park, Heesoo Uhm, Yong-Woo Kim, et al.Methods in Molecular Biology (Clifton, N.J.)|January 1, 2020
Single-Molecule FRET Assay for Studying Cotranscriptional RNA FoldingHeesoo Uhm, Sungchul HohngNature Biotechnology|July 10, 2026
Engineered ADARs enable precision A-to-G base editing of DNAHyeon Woo Im, Bada Jeong, Yeji Lee, et al.Bioinformatics (Oxford, England)|November 30, 2017
Cpf1-Database: web-based genome-wide guide RNA library design for gene knockout screens using CRISPR-Cpf1Jeongbin Park, Sangsu BaeMolecules and Cells|June 23, 2024
Genome editing using CRISPR, CAST, and Fanzor systemsBeomjong Song, Sangsu BaeMethods in Molecular Biology (Clifton, N.J.)|January 2, 2023
Introduction and Perspectives of DNA Base EditorsBeomjong Song, Sangsu BaeMethods in Molecular Biology (Clifton, N.J.)|November 12, 2020
Web-Based Base Editing Toolkits: BE-Designer and BE-AnalyzerGue-Ho Hwang, Sangsu BaeBMB Reports|March 1, 2016
Structural and dynamic views of the CRISPR-Cas system at the single-molecule levelSeung Hwan Lee, Sangsu BaePageof 12