Jian Fang
Affiliations: | University of California, Riverside, Riverside, CA, United States |
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Jiang J, Gwee J, Fang J, et al. (2024) Substrate specificity and protein stability drive the divergence of plant-specific DNA methyltransferases. Biorxiv : the Preprint Server For Biology |
Chen X, Guo Y, Zhao T, et al. (2024) Structural basis for the H2AK119ub1-specific DNMT3A-nucleosome interaction. Nature Communications. 15: 6217 |
Lu J, Fang J, Zhu H, et al. (2023) Structural basis for the allosteric regulation and dynamic assembly of DNMT3B. Nucleic Acids Research |
Chen J, Lu J, Liu J, et al. (2023) DNA conformational dynamics in the context-dependent non-CG CHH methylation by plant methyltransferase DRM2. The Journal of Biological Chemistry. 105433 |
Gao L, Guo Y, Biswal M, et al. (2022) Structure of DNMT3B homo-oligomer reveals vulnerability to impairment by ICF mutations. Nature Communications. 13: 4249 |
Fang J, Jiang J, Leichter SM, et al. (2022) Mechanistic basis for maintenance of CHG DNA methylation in plants. Nature Communications. 13: 3877 |
Fang J, Leichter SM, Jiang J, et al. (2021) Substrate deformation regulates DRM2-mediated DNA methylation in plants. Science Advances. 7 |
Biswal M, Diggs S, Xu D, et al. (2021) Two conserved oligomer interfaces of NSP7 and NSP8 underpin the dynamic assembly of SARS-CoV-2 RdRP. Nucleic Acids Research |
Wang B, Thurmond S, Zhou K, et al. (2020) Structural basis for STAT2 suppression by flavivirus NS5. Nature Structural & Molecular Biology |
Anteneh H, Fang J, Song J. (2020) Structural basis for impairment of DNA methylation by the DNMT3A R882H mutation. Nature Communications. 11: 2294 |