Active site geometry of oxalate decarboxylase from Flammulina velutipes: Role of histidine coordinated manganese in substrate recognition
Date
2002
Journal Title
Journal ISSN
Volume Title
Publisher
Cold Spring Harbor Laboratory Press
Abstract
Oxalate decarboxylase (OXDC) from the wood-rotting fungus Flammulina velutipes, which catalyzes the
conversion of oxalate to formic acid and CO2 in a single-step reaction, is a duplicated double-domain germin
family enzyme. It has agricultural as well as therapeutic importance. We reported earlier the purification and
molecular cloning of OXDC. Knowledge-based modeling of the enzyme reveals a -barrel core in each of
the two domains organized in the hexameric state. A cluster of three histidines suitably juxtaposed to
coordinate a divalent metal ion exists in both the domains. Involvement of the two histidine clusters in the
catalytic mechanism of the enzyme, possibly through coordination of a metal cofactor, has been hypoth-
esized because all histidine knockout mutants showed total loss of decarboxylase activity. The atomic
absorption spectroscopy analysis showed that OXDC contains Mn2+ at up to 2.5 atoms per subunit. Docking
of the oxalate in the active site indicates a similar electrostatic environment around the substrate-binding site
in the two domains. We suggest that the histidine coordinated manganese is critical for substrate recognition
and is directly involved in the catalysis of the enzyme.
Description
Keywords
Oxalate decarboxylase, ECM protein, germin motif, knowledge-based modeling, knockout mutants
Citation
Protein Sci., 11: 2138-2147
