Structural analysis of an open active site conformation of nonheme iron halogenase CytC3
Author(s)
Wong, Cintyu; Fujimori, Danica Galonic; Walsh, Christopher T.; Drennan, Catherine L.
DownloadDrennan_Structural ja8097355.pdf (2.189Mb)
PUBLISHER_POLICY
Publisher Policy
Article is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use.
Terms of use
Metadata
Show full item recordAbstract
CytC3, a member of the recently discovered class of nonheme Fe(II) and R-ketoglutarate (RKG)-
dependent halogenases, catalyzes the double chlorination of L-2-aminobutyric acid (Aba) to produce a
known Streptomyces antibiotic, gamma,gamma-dichloroaminobutyrate. Unlike the majority of the Fe(II)-RKG-dependentenzymes that catalyze hydroxylation reactions, halogenases catalyze a transfer of halides. To examinethe important enzymatic features that discriminate between chlorination and hydroxylation, the crystal structures of CytC3 both with and without RKG/Fe(II) have been solved to 2.2 Å resolution. These structures capture CytC3 in an open active site conformation, in which no chloride is bound to iron. Comparison of the open conformation of CytC3 with the closed conformation of another nonheme iron halogenase, SyrB2, suggests two important criteria for creating an enzyme-bound FesCl catalyst: (1) the presence of a hydrogen-bonding network between the chloride and surrounding residues, and (2) the presence of a hydrophobic pocket in which the chloride resides.
Date issued
2009-03Department
Massachusetts Institute of Technology. Department of ChemistryJournal
Journal of the American Chemical Society
Publisher
American Chemical Society
Citation
Wong, Cintyu et al. “Structural Analysis of an Open Active Site Conformation of Nonheme Iron Halogenase CytC3.” Journal of the American Chemical Society 131.13 (2009) : 4872-4879. © 2009 American Chemical Society.
Version: Final published version
ISSN
1520-5126
0002-7863