Structural Basis for Nucleotide Binding and Reaction Catalysis in Mevalonate Diphosphate Decarboxylase
- UMKC
Mevalonate diphosphate decarboxylase (MDD) catalyzes the final step of the mevalonate pathway, the Mg{sup 2+}-ATP dependent decarboxylation of mevalonate 5-diphosphate (MVAPP), producing isopentenyl diphosphate (IPP). Synthesis of IPP, an isoprenoid precursor molecule that is a critical intermediate in peptidoglycan and polyisoprenoid biosynthesis, is essential in Gram-positive bacteria (e.g., Staphylococcus, Streptococcus, and Enterococcus spp.), and thus the enzymes of the mevalonate pathway are ideal antimicrobial targets. MDD belongs to the GHMP superfamily of metabolite kinases that have been extensively studied for the past 50 years, yet the crystallization of GHMP kinase ternary complexes has proven to be difficult. To further our understanding of the catalytic mechanism of GHMP kinases with the purpose of developing broad spectrum antimicrobial agents that target the substrate and nucleotide binding sites, we report the crystal structures of wild-type and mutant (S192A and D283A) ternary complexes of Staphylococcus epidermidis MDD. Comparison of apo, MVAPP-bound, and ternary complex wild-type MDD provides structural information about the mode of substrate binding and the catalytic mechanism. Structural characterization of ternary complexes of catalytically deficient MDD S192A and D283A (k{sub cat} decreased 10{sup 3}- and 10{sup 5}-fold, respectively) provides insight into MDD function. The carboxylate side chain of invariant Asp{sup 283} functions as a catalytic base and is essential for the proper orientation of the MVAPP C3-hydroxyl group within the active site funnel. Several MDD amino acids within the conserved phosphate binding loop ('P-loop') provide key interactions, stabilizing the nucleotide triphosphoryl moiety. The crystal structures presented here provide a useful foundation for structure-based drug design.
- Research Organization:
- Argonne National Lab. (ANL), Argonne, IL (United States). Advanced Photon Source (APS)
- Sponsoring Organization:
- OTHERNIH
- OSTI ID:
- 1047910
- Journal Information:
- Biochemistry-US, Vol. 51, Issue (28) ; 07, 2012; ISSN 0006-2960
- Country of Publication:
- United States
- Language:
- ENGLISH
Similar Records
Crystal Structures of Staphylococcus epidermidis Mevalonate Diphosphate Decarboxylase Bound to Inhibitory Analogs Reveal New Insight into Substrate Binding and Catalysis
Visualizing the enzyme mechanism of mevalonate diphosphate decarboxylase
Related Subjects
60 APPLIED LIFE SCIENCES
AMINO ACIDS
ANTIMICROBIAL AGENTS
BACTERIA
BIOSYNTHESIS
CATALYSIS
CRYSTAL STRUCTURE
CRYSTALLIZATION
DECARBOXYLASES
DECARBOXYLATION
ENZYMES
METABOLITES
MUTANTS
NUCLEOTIDES
ORIENTATION
PHOSPHATES
PHOSPHOTRANSFERASES
PRECURSOR
STAPHYLOCOCCUS
STREPTOCOCCUS
SUBSTRATES
SYNTHESIS
TARGETS