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    Development of a Selective Inhibitor of Protein Arginine Deiminase 2.

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    Authors
    Muth, Aaron
    Subramanian, Venkataraman
    Beaumont, Edward
    Nagar, Mitesh
    Kerry, Philip
    McEwan, Paul
    Srinath, Hema
    Clancy, Kathleen W.
    Parelkar, Sangram
    Thompson, Paul R
    UMass Chan Affiliations
    Program in Chemical Biology
    Department of Biochemistry and Molecular Pharmacology
    Thompson Lab
    Document Type
    Journal Article
    Publication Date
    2017-04-13
    Keywords
    Benzimidazoles
    Drug Design
    Enzyme Inhibitors
    HEK293 Cells
    Humans
    Hydrolases
    Molecular Docking Simulation
    Protein-Arginine Deiminases
    Benzimidazoles
    Drug Design
    Enzyme Inhibitors
    HEK293 Cells
    Humans
    Hydrolases
    Molecular Docking Simulation
    Protein-Arginine Deiminases
    Biochemistry
    Enzymes and Coenzymes
    Medicinal-Pharmaceutical Chemistry
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    Link to Full Text
    https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5477668/
    Abstract
    Protein arginine deiminase 2 (PAD2) plays a key role in the onset and progression of multiple sclerosis, rheumatoid arthritis, and breast cancer. To date, no PAD2-selective inhibitor has been developed. Such a compound will be critical for elucidating the biological roles of this isozyme and may ultimately be useful for treating specific diseases in which PAD2 activity is dysregulated. To achieve this goal, we synthesized a series of benzimidazole-based derivatives of Cl-amidine, hypothesizing that this scaffold would allow access to a series of PAD2-selective inhibitors with enhanced cellular efficacy. Herein, we demonstrate that substitutions at both the N-terminus and C-terminus of Cl-amidine result in >100-fold increases in PAD2 potency and selectivity (30a, 41a, and 49a) as well as cellular efficacy (30a). Notably, these compounds use the far less reactive fluoroacetamidine warhead. In total, we predict that 30a will be a critical tool for understanding cellular PAD2 function and sets the stage for treating diseases in which PAD2 activity is dysregulated.
    Source

    J Med Chem. 2017 Apr 13;60(7):3198-3211. doi: 10.1021/acs.jmedchem.7b00274. Epub 2017 Mar 31. Link to article on publisher's website

    DOI
    10.1021/acs.jmedchem.7b00274
    Permanent Link to this Item
    http://hdl.handle.net/20.500.14038/46443
    PubMed ID
    28328217
    Related Resources

    Link to article in PubMed

    ae974a485f413a2113503eed53cd6c53
    10.1021/acs.jmedchem.7b00274
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