A Fluoroacetamidine-Based Inactivator of Protein Arginine Deiminase 4: Design, Synthesis, and in Vitro and in Vivo Evaluation
- 7 January 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 128 (4) , 1092-1093
- https://doi.org/10.1021/ja0576233
Abstract
Protein arginine deiminase 4 (PAD4) is a calcium-dependent transcriptional corepressor that has been implicated in the onset and progression of rheumatoid arthritis. Herein we describe the synthesis and in vitro evaluation of a fluoroacetamidine-containing compound, N-α-benzoyl-N5-(2-fluoro-1-iminoethyl)-l-ornithine amide, 1, hereafter referred to as F-amidine, that is the most potent PAD4 inhibitor ever described. Additional studies described herein indicate that F-amidine can also inhibit PAD4 activity in vivo. The bioavailability of this compound suggests that F-amidine will be a powerful chemical probe of PAD4 function that can be used to dissect the roles of this enzyme in both rheumatoid arthritis and transcriptional control. The fact that inhibition is of an irreversible nature suggests that, with appropriate functionalization, F-amidine analogues will be robust activity-based protein-profiling and proteomic capture reagents.Keywords
This publication has 14 references indexed in Scilit:
- Inactivation of Two Diverse Enzymes in the Amidinotransferase Superfamily by 2-Chloroacetamidine: Dimethylargininase and Peptidylarginine DeiminaseBiochemistry, 2005
- Kinetic Characterization of Protein Arginine Deiminase 4: A Transcriptional Corepressor Implicated in the Onset and Progression of Rheumatoid ArthritisBiochemistry, 2005
- Human PAD4 Regulates Histone Arginine Methylation Levels via DemethyliminationScience, 2004
- Carbonyl Sulfide-Mediated Prebiotic Formation of PeptidesScience, 2004
- Histone Deimination Antagonizes Arginine MethylationCell, 2004
- Structural basis for Ca2+-induced activation of human PAD4Nature Structural & Molecular Biology, 2004
- Crystal Structures of Arginine Deiminase with Covalent Reaction Intermediates: Implications for Catalytic MechanismStructure, 2004
- Arginine Deiminase Uses an Active-Site Cysteine in Nucleophilic Catalysis of l-Arginine HydrolysisJournal of the American Chemical Society, 2004
- PAD, a growing family of citrullinating enzymes: genes, features and involvement in diseaseBioEssays, 2003
- Functional haplotypes of PADI4, encoding citrullinating enzyme peptidylarginine deiminase 4, are associated with rheumatoid arthritisNature Genetics, 2003