articleTop 1% cited
Structure-Activity Relationships for Inhibition of Farnesyl Diphosphate Synthase in Vitro and Inhibition of Bone Resorption in Vivo by Nitrogen-Containing Bisphosphonates
Journal of Pharmacology and Experimental Therapeutics · 2001 · Vol. 296(2) · pp. 235–242
James E. Dunford✉(University of Aberdeen)Keith ThompsonFraser P. CoxonSteven P. Luckman(University of Aberdeen)Frederick M. Hahn(University of Hawaiʻi at Mānoa)C. Dale PoulterFrank H. Ebetino(Procter & Gamble (Netherlands))Michael J. Rogers
Bone health and treatmentsRadiopharmaceutical Chemistry and ApplicationsBone Metabolism and DiseasesFarnesyl diphosphate synthasePotencyIn vivoBone resorptionChemistryPrenylationPharmacologyIn vitroBiochemistryATP synthase
MeSH terms
AnimalsBone ResorptionDiphosphonatesEnzyme InhibitorsIndicators and ReagentsMevalonic AcidOsteoclastsProtein ConformationRabbitsRecombinant ProteinsStructure-Activity RelationshipProtein PrenylationNitrogen CompoundsAlkyl and Aryl TransferasesGeranyltranstransferase
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894
FWCI
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References
Nitrogen-Containing Bisphosphonates Inhibit the Mevalonate Pathway and Prevent Post-Translational Prenylation of GTP-Binding Proteins, Including Ras
Journal of Bone and Mineral Research · 1998 · 1,185 citations
Bisphosphonates promote apoptosis in murine osteoclasts in vitro and in vivo
Journal of Bone and Mineral Research · 1995 · 1,044 citations
PROTEIN PRENYLATION: Molecular Mechanisms and Functional Consequences
Annual Review of Biochemistry · 1996 · 2,008 citations
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