Publications
Structure-based design of nanobodies that inhibit seeding of Alzheimer's patient-extracted tau fibrils. Proc Natl Acad Sci U S A. 120, e2300258120
(2023) Targeting the Spike Receptor Binding Domain Class V Cryptic Epitope by an Antibody with Pan-Sarbecovirus Activity. J Virol. 97, e0159622
(2023) Targeting the Spike Receptor Binding Domain Class V Cryptic Epitope by an Antibody with Pan-Sarbecovirus Activity. J Virol. 97, e0159622
(2023) Targeting the Spike Receptor Binding Domain Class V Cryptic Epitope by an Antibody with Pan-Sarbecovirus Activity. J Virol. 97, e0159622
(2023) Targeting the Spike Receptor Binding Domain Class V Cryptic Epitope by an Antibody with Pan-Sarbecovirus Activity. J Virol. 97, e0159622
(2023) Targeting the Spike Receptor Binding Domain Class V Cryptic Epitope by an Antibody with Pan-Sarbecovirus Activity. J Virol. 97, e0159622
(2023) The TINCR ubiquitin-like microprotein is a tumor suppressor in squamous cell carcinoma. Nat Commun. 14, 1328
(2023) The TINCR ubiquitin-like microprotein is a tumor suppressor in squamous cell carcinoma. Nat Commun. 14, 1328
(2023) (2023) TRIM56 coiled-coil domain structure provides insights into its E3 ligase functions. Comput Struct Biotechnol J. 21, 2801-2808
(2023) TRIM56 coiled-coil domain structure provides insights into its E3 ligase functions. Comput Struct Biotechnol J. 21, 2801-2808
(2023) A unique binding pocket induced by a noncanonical SAH mimic to develop potent and selective PRMT inhibitors. Acta Pharm Sin B. 13, 4893-4905
(2023) X-ray Crystallographic Study of Preferred Spacing by the NF-κB p50 Homodimer on κB DNA.. Biomolecules. 10.3390/biom13091310
(2023) X-ray Crystallographic Study of Preferred Spacing by the NF-κB p50 Homodimer on κB DNA.. Biomolecules. 10.3390/biom13091310
(2023) X-ray Crystallographic Study of Preferred Spacing by the NF-κB p50 Homodimer on κB DNA.. Biomolecules. 10.3390/biom13091310
(2023) (2023) (2023) (2023) (2023) (2023) (2023) (2023) (2023) Accurate de novo design of membrane-traversing macrocycles. Cell. 10.1016/j.cell.2022.07.019
(2022) Accurate de novo design of membrane-traversing macrocycles. Cell. 10.1016/j.cell.2022.07.019
(2022)