Počet záznamů: 1  

Small molecule inhibitors of protein interaction with glycosaminoglycans (SMIGs), a novel class of bioactive agents with anti-inflammatory properties

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    0425441 - ÚŽFG 2014 NL eng J - Článek v odborném periodiku
    Harris, N. - Kogan, F. Y. - Ilková, G. - Juhás, Štefan - Lahmy, O. - Gregor, Y. I. - Koppel, J. - Zhuk, R. - Gregor, P.
    Small molecule inhibitors of protein interaction with glycosaminoglycans (SMIGs), a novel class of bioactive agents with anti-inflammatory properties.
    Biochimica et Biophysica Acta-General Subjects. Roč. 1840, č. 1 (2014), s. 245-254. ISSN 0304-4165. E-ISSN 1872-8006
    Institucionální podpora: RVO:67985904
    Klíčová slova: heparan sulfate * heparin binding protein * glycosaminoglycan
    Kód oboru RIV: EB - Genetika a molekulární biologie
    Impakt faktor: 4.381, rok: 2014

    Background Small molecule inhibitors of biologically important protein-glycosaminoglycan (GAG) interactions have yet to be identified. Methods Compound libraries were screened in an assay of L-selectin-IgG binding to heparin (a species of heparan sulfate [HS-GAG]). Hits were validated, IC-50s established and direct binding of hits to HS-GAGs was investigated by incubating compounds alone with heparin. Selectivity of inhibitors was assessed in 11 different protein-GAG binding assays. Anti-inflammatory activity of selected compounds was evaluated in animal models. Results Screening identified a number of structurally-diverse planar aromatic cationic amines. Scaffolds similar to known GAG binders, chloroquine and tilorone, were also identified. Inhibitors displayed activity also against bovine kidney heparan sulfate. Direct binding of compounds to GAGs was verified by incubating compounds with heparin alone. Selectivity of inhibitors was demonstrated in a panel of 11 heparin binding proteins, including selectins, chemokines (IL-8, IP-10), Beta Amyloid and cytokines (VEGF, IL-6). A number of selected lead compounds showed dose-dependent efficacy in peritonitis, paw edema and delayed type hypersensitivity. Conclusions A new class of compounds, SMIGs, inhibits protein-GAG interaction by direct binding to GAGs. Although their IC-50s were in the low micro-molar range, SMIGs binding to HS-GAGs appeared to be stable in physiological conditions, indicating high avidity binding. SMIGs may interfere with major checkpoints for inflammatory and autoimmune events. General significance SMIGs are a class of structurally-diverse planar aromatic cationic amines that have an unusual mode of action - inhibiting protein-GAG interactions via direct and stable binding to GAGs. SMIGs may have therapeutic potential in inflammatory and autoimmune disorders.
    Trvalý link: http://hdl.handle.net/11104/0231328

     
     
Počet záznamů: 1  

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