Mechanism and structure based design of inhibitors of AMP and adenosine deaminase

[Display omitted] Inhibitors of the enzyme adenosine monophosphate deaminase (AMPD) show interesting levels of herbicidal activity. An enzyme mechanism-based approach has been used to design new inhibitors of AMPD starting from nebularine (6) and resulting in the synthesis of 2-deoxy isonebularine (...

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Veröffentlicht in:Bioorganic & medicinal chemistry 2021-08, Vol.43, p.116272-116272, Article 116272
Hauptverfasser: Lindell, Stephen D., Maechling, Simon, Klein, Robert, Freigang, Jörg, Laber, Bernd, Blanazs, Lisa, Leonhardt, Merisa, Haupt, Susanne, Petry, Thomas, Sabina, Richard L.
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Sprache:eng
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Zusammenfassung:[Display omitted] Inhibitors of the enzyme adenosine monophosphate deaminase (AMPD) show interesting levels of herbicidal activity. An enzyme mechanism-based approach has been used to design new inhibitors of AMPD starting from nebularine (6) and resulting in the synthesis of 2-deoxy isonebularine (16). This compound is a potent inhibitor of the related enzyme adenosine deaminase (ADA; IC50 16 nM), binding over 5000 times more strongly than nebularine. It is proposed that the herbicidal activity of compound 16 is due to 5́-phosphorylation in planta to give an inhibitor of AMPD. Subsequently, an enzyme structure-based approach was used to design new non-ribosyl AMPD inhibitors. The initial lead structure was discovered by in silico screening of a virtual library against plant AMPD. In a second step, binding to AMPD was further optimised via more detailed molecular modeling leading to 2-(benzyloxy)-5-(imidazo[2,1-f][1,2,4]triazin-7-yl)benzoic acid (36) (IC50 300 nM). This compound does not inhibit ADA and shows excellent selectivity for plant over human AMPD.
ISSN:0968-0896
1464-3391
DOI:10.1016/j.bmc.2021.116272