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Methods in Molecular Biology (Clifton, N.J.)|August 1, 2026
Native Chemical Ligation to Install Chemical Protein ModificationsEldon R Hard, Afraah Javed, Matthew R PrattJACS Au|January 31, 2022
Methods for Studying Site-Specific O-GlcNAc Modifications: Successes, Limitations, and Important Future GoalsStuart P Moon, Afraah Javed, Eldon R Hard, et al.ACS Chemical Biology|July 14, 2023
HSP27 Inhibitory Activity against Caspase-3 Cleavage and Activation by Caspase-9 Is Enhanced by Chaperone O-GlcNAc Modification in VitroBinyou Wang, Stuart P Moon, Giuliano Cutolo, et al.ACS Chemical Biology|August 4, 2023
O-GlcNAc Modification Alters the Chaperone Activity of HSP27 Charcot-Marie-Tooth Type 2 (CMT2) Variants in a Mutation-Selective FashionStuart P Moon, Binyou Wang, Benjamin S Ahn, et al.Protein Science : a Publication of the Protein Society|September 18, 2024
O-GlcNAc modification of HSP27 alters its protein interactions and promotes refolding of proteins through the BAG3/HSP70 co-chaperoneAfraah Javed, Oleta T Johnson, Aaron T Balana, et al.Nature Chemical Biology|February 12, 2024
O-GlcNAc forces an α-synuclein amyloid strain with notably diminished seeding and pathologyAaron T Balana, Anne-Laure Mahul-Mellier, Binh A Nguyen, et al.Biorxiv : the Preprint Server for Biology|March 22, 2023
O-GlcNAc modification forces the formation of an α-Synuclein amyloid-strain with notably diminished seeding activity and pathologyAaron T Balana, Anne-Laure Mahul-Mellier, Binh A Nguyen, et al.Pageof 1