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PMID: 16892359 Published · ppublish English Journal Article

Structural basis for the exceptional in vivo efficacy of bisphosphonate drugs.

ChemMedChem ·Vol. 1 ·No. 2 ·2006-02-00 ·Pages 267-73

Rondeau JM, Bitsch F, Bourgier E, Geiser M, Hemmig R, Kroemer M, Lehmann S, Ramage P, Rieffel S, Strauss A, Green JR, Jahnke W

Abstract

To understand the structural basis for bisphosphonate therapy of bone diseases, we solved the crystal structures of human farnesyl pyrophosphate synthase (FPPS) in its unliganded state, in complex with the nitrogen-containing bisphosphonate (N-BP) drugs zoledronate, pamidronate, alendronate, and ibandronate, and in the ternary complex with zoledronate and the substrate isopentenyl pyrophosphate (IPP). By revealing three structural snapshots of the enzyme catalytic cycle, each associated with a distinct conformational state, and details about the interactions with N-BPs, these structures provide a novel understanding of the mechanism of FPPS catalysis and inhibition. In particular, the accumulating substrate, IPP, was found to bind to and stabilize the FPPS-N-BP complexes rather than to compete with and displace the N-BP inhibitor. Stabilization of the FPPS-N-BP complex through IPP binding is supported by differential scanning calorimetry analyses of a set of representative N-BPs. Among other factors such as high binding affinity for bone mineral, this particular mode of FPPS inhibition contributes to the exceptional in vivo efficacy of N-BP drugs. Moreover, our data form the basis for structure-guided design of optimized N-BPs with improved pharmacological properties.

MeSH Terms
Calorimetry, Differential Scanning Crystallography, X-Ray Diphosphonates/chemistry,pharmacology Humans Models, Molecular Molecular Structure
Chemicals
Diphosphonates
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Rondeau Jean-Michel
Novartis Institutes for BioMedical Research, Discovery Technologies, 4002 Basel, Switzerland. jeanmichel.rondeau@novartis.com
Bitsch Francis
Bourgier Emmanuelle
Geiser Martin
Hemmig Rene
Kroemer Markus
Lehmann Sylvie
Ramage Paul
Rieffel Sebastien
Strauss André
Green Jonathan R
Jahnke Wolfgang
Article Info
Journal
ChemMedChem
Abbr.
ChemMedChem
ISSN
1860-7179
Published
2006-02-00
Pages
267-73
Language
English
Region
Germany
NLM ID
101259013
Subset
IM
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