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Journal of Molecular Biology|November 9, 2025
Both Domains of APOBEC3F Recognize AA RNA Motifs to Support HIV-1 Virion Encapsidation and Antiviral FunctionJosue Pacheco, Maria Yousefi, Hanjing Yang, et al.
The Journal of Biological Chemistry|January 13, 2009
Dissecting APOBEC3G substrate specificity by nucleoside analog interferenceJason W Rausch, Linda Chelico, Myron F Goodman, et al.
The Journal of Biological Chemistry|March 10, 2010
Structural model for deoxycytidine deamination mechanisms of the HIV-1 inactivation enzyme APOBEC3GLinda Chelico, Courtney Prochnow, Dorothy A Erie, et al.
Journal of Molecular Biology|November 12, 2018
RNA-Mediated Dimerization of the Human Deoxycytidine Deaminase APOBEC3H Influences Enzyme Activity and Interaction with Nucleic AcidsYuqing Feng, Lai Wong, Michael Morse, et al.
Biorxiv : the Preprint Server for Biology|September 30, 2024
WITHDRAWN: Strand dependent bypass of DNA lesions during fork reversal by ATP-dependent translocases SMARCAL1, ZRANB3, and HLTFMadison B Adolph, Garrett M Warren, Frank B Couch, et al.
Journal of Molecular Biology|August 12, 2023
CRISPR-dependent Base Editing Screens Identify Separation of Function Mutants of RADX with Altered RAD51 Regulatory ActivityMadison B Adolph, Atharv S Garje, Swati Balakrishnan, et al.
Plos Pathogens|June 25, 2021
Highly-potent, synthetic APOBEC3s restrict HIV-1 through deamination-independent mechanismsMollie M McDonnell, Suzanne C Karvonen, Amit Gaba, et al.
Virology|November 19, 2018
Polymorphisms of the cytidine deaminase APOBEC3F have different HIV-1 restriction efficienciesNazanin Mohammadzadeh, Tyson B Follack, Robin P Love, et al.
The Journal of Biological Chemistry|June 2, 2019
Structure of Ddi2, a highly inducible detoxifying metalloenzyme from Saccharomyces cerevisiaeJia Li, Yunhua Jia, Aiyang Lin, et al.
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