3rva Citations

Organophosphorus acid anhydrolase from Alteromonas macleodii: structural study and functional relationship to prolidases.

Acta Crystallogr Sect F Struct Biol Cryst Commun 69 346-54 (2013)
Cited: 6 times
EuropePMC logo PMID: 23545636

Abstract

The bacterial enzyme organophosphorus acid anhydrolase (OPAA) is able to catalyze the hydrolysis of both proline dipeptides (Xaa-Pro) and several types of organophosphate (OP) compounds. The full three-dimensional structure of the manganese-dependent OPAA enzyme is presented for the first time. This enzyme, which was originally isolated from the marine bacterium Alteromonas macleodii, was prepared recombinantly in Escherichia coli. The crystal structure was determined at 1.8 Å resolution in space group C2, with unit-cell parameters a = 133.8, b = 49.2, c = 97.3 Å, β = 125.0°. The enzyme forms dimers and their existence in solution was confirmed by dynamic light scattering and size-exclusion chromatography. The enzyme shares the pita-bread fold of its C-terminal domain with related prolidases. The binuclear manganese centre is located in the active site within the pita-bread domain. Moreover, an Ni(2+) ion from purification was localized according to anomalous signal. This study presents the full structure of this enzyme with complete surroundings of the active site and provides a critical analysis of its relationship to prolidases.

Articles - 3rva mentioned but not cited (2)

  1. Structural basis of substrate selectivity of E. coli prolidase. Weaver J, Watts T, Li P, Rye HS. PLoS One 9 e111531 (2014)
  2. Organophosphorus acid anhydrolase from Alteromonas macleodii: structural study and functional relationship to prolidases. Štěpánková A, Dušková J, Skálová T, Hašek J, Koval' T, Østergaard LH, Dohnálek J. Acta Crystallogr Sect F Struct Biol Cryst Commun 69 346-354 (2013)


Reviews citing this publication (1)

  1. Current and emerging strategies for organophosphate decontamination: special focus on hyperstable enzymes. Jacquet P, Daudé D, Bzdrenga J, Masson P, Elias M, Chabrière E. Environ Sci Pollut Res Int 23 8200-8218 (2016)

Articles citing this publication (3)

  1. Substrate specificity and reaction mechanism of human prolidase. Wilk P, Uehlein M, Kalms J, Dobbek H, Mueller U, Weiss MS. FEBS J 284 2870-2885 (2017)
  2. Crystal structure of a novel prolidase from Deinococcus radiodurans identifies new subfamily of bacterial prolidases. Are VN, Jamdar SN, Ghosh B, Goyal VD, Kumar A, Neema S, Gadre R, Makde RD. Proteins 85 2239-2251 (2017)
  3. Enzymatic and proteomic exploration into the inhibitory activities of lemongrass and lemon essential oils against Botrytis cinerea (causative pathogen of gray mold). Kgang IE, Klein A, Mohamed GG, Mathabe PMK, Belay ZA, Caleb OJ. Front Microbiol 13 1101539 (2022)