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1491335 
Journal Article 
Substrate specificity of naphthalene dioxygenase: Effect of specific amino acids at the active site of the enzyme 
Parales, RE; Lee, K; Resnick, SM; Jiang, HY; Lessner, DJ; Gibson, DT 
2000 
Yes 
Journal of Bacteriology
ISSN: 0021-9193
EISSN: 1098-5530 
American Society for Microbiology 
182 
1641-1649 
English 
The three-component naphthalene dioxygenase (NDO) enzyme system carries out the first step in the aerobic degradation of naphthalene by Pseudomonas sp, strain NCIB 981.6-4, The three-dimensional structure of NDO revealed that several of the amino acids at the active site of the oxygenase are hydrophobic, which is consistent with the enzyme's preference for aromatic hydrocarbon substrates, Although NDO catalyzes cis-dihydroxylation of a wide range of substrates, it is highly regio- and enantioselective, Site-directed mutagenesis was used to determine the contributions of several active-site residues to these aspects of catalysis. Amino acid substitutions at Asn-201, Phe-202, Val-260, Trp-316, Thr-351, Trp-358, and Met-366 had little or no effect on product formation with naphthalene or biphenyl as substrates and had slight but significant effects on product formation from phenanthrene, Amino acid substitutions at Phe-352 resulted in the formation of cis-naphthalene dihydrodiol with altered stereochemistry [92 to 96% (+)-1R,2S], compared to the enantiomerically pure [>99% (+)-1R,2S] product formed by the wild-type enzyme, Substitutions at position 352 changed the site of oxidation of biphenyl and phenanthrene, Substitution of alanine for Asp-362, a ligand to the active-site iron, resulted in a completely inactive enzyme. 
Biphenyl Compounds; Culture Media; Indoles; Multienzyme Complexes; Naphthalenes; Phenanthrenes; naphthalene; 2166IN72UN; diphenyl; 2L9GJK6MGN; phenanthrene; 448J8E5BST; Indigo Carmine; D3741U8K7L; Oxygenases; EC 1.13.-; Dioxygenases; EC 1.13.11.-; naphthalene dioxygenase; EC 1.14.12.-; Index Medicus; Biodegradation, Environmental; Phenanthrenes -- metabolism; Models, Molecular; Substrate Specificity; Biphenyl Compounds -- metabolism; Indoles -- metabolism; Escherichia coli -- enzymology; Plasmids -- genetics; Escherichia coli -- genetics; Binding Sites; Oxygenases -- chemistry; Multienzyme Complexes -- metabolism; Mutagenesis, Site-Directed; Oxygenases -- genetics; Multienzyme Complexes -- chemistry; Multienzyme Complexes -- genetics; Oxygenases -- metabolism; Naphthalenes -- metabolism; Amino Acid Substitution 
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