Woo_2008_Protein.Sci_17_725

Reference

Title : Structure-function studies on the active site of the coelenterazine-dependent luciferase from Renilla - Woo_2008_Protein.Sci_17_725
Author(s) : Woo J , Howell MH , von Arnim AG
Ref : Protein Science , 17 :725 , 2008
Abstract :

Renilla luciferase (RLUC) is a versatile tool for gene expression assays and in vivo biosensor applications, but its catalytic mechanism remains to be elucidated. RLUC is evolutionarily related to the alpha/beta hydrolase family. Its closest known homologs are bacterial dehalogenases, raising the question of how a protein with a hydrolase fold can function as a decarboxylating oxygenase. Molecular docking simulations with the coelenterazine substrate against an RLUC homology model as well as a recently determined RLUC crystal structure were used to build hypotheses to identify functionally important residues, which were subsequently tested by site-directed mutagenesis, heterologous expression, and bioluminescence emission spectroscopy. The data highlighted two triads of residues that are critical for catalysis. The putative catalytic triad residues D120, E144, and H285 bear only limited resemblance to those found in the active site of aequorin, a coelenterazine-utilizing photoprotein, suggesting that the reaction scheme employed by RLUC differs substantially from the one established for aequorin. The role of H285 in catalysis was further supported by inhibition using diethylpyrocarbonate. Multiple substitutions of N53, W121, and P220--three other residues implicated in product binding in the homologous dehalogenase Sphingomonas LinB--also supported their involvement in catalysis. Together with luminescence spectra, our data lead us to propose that the conserved catalytic triad of RLUC is directly involved in the decarboxylation reaction of coelenterazine to produce bioluminescence, while the other active-site residues are used for binding of the substrate.

PubMedSearch : Woo_2008_Protein.Sci_17_725
PubMedID: 18359861
Gene_locus related to this paper: renre-luc

Related information

Substrate Coelenterazine
Gene_locus renre-luc

Citations formats

Woo J, Howell MH, von Arnim AG (2008)
Structure-function studies on the active site of the coelenterazine-dependent luciferase from Renilla
Protein Science 17 :725

Woo J, Howell MH, von Arnim AG (2008)
Protein Science 17 :725