Probing the molecular and structural elements of ligands binding to the active site versus an allosteric pocket of the human farnesyl pyrophosphate synthase

Bisphosphonate chameleons that suggest a feed-back regulatory role for an allosteric pocket of the human farnesyl pyrophosphate synthase. [Display omitted] In order to explore the interactions of bisphosphonate ligands with the active site and an allosteric pocket of the human farnesyl pyrophosphate...

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Veröffentlicht in:Bioorganic & medicinal chemistry letters 2015-03, Vol.25 (5), p.1117-1123
Hauptverfasser: Gritzalis, Dimitrios, Park, Jaeok, Chiu, Wei, Cho, Hyungjun, Lin, Yih-Shyan, De Schutter, Joris W., Lacbay, Cyrus M., Zielinski, Michal, Berghuis, Albert M., Tsantrizos, Youla S.
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Sprache:eng
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Zusammenfassung:Bisphosphonate chameleons that suggest a feed-back regulatory role for an allosteric pocket of the human farnesyl pyrophosphate synthase. [Display omitted] In order to explore the interactions of bisphosphonate ligands with the active site and an allosteric pocket of the human farnesyl pyrophosphate synthase (hFPPS), substituted indole and azabenzimidazole bisphosphonates were designed as chameleon ligands. NMR and crystallographic studies revealed that these compounds can occupy both sub-pockets of the active site cavity, as well as the allosteric pocket of hFPPS in the presence of the enzyme’s Mg2+ ion cofactor. These results are consistent with the previously proposed hypothesis that the allosteric pocket of hFPPS, located near the active site, plays a feed-back regulatory role for this enzyme.
ISSN:0960-894X
1464-3405
DOI:10.1016/j.bmcl.2014.12.089