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1.
Proc Natl Acad Sci U S A ; 117(10): 5280-5290, 2020 03 10.
Article in English | MEDLINE | ID: mdl-32094184

ABSTRACT

Biocatalytic copper centers are generally involved in the activation and reduction of dioxygen, with only few exceptions known. Here we report the discovery and characterization of a previously undescribed copper center that forms the active site of a copper-containing enzyme thiocyanate dehydrogenase (suggested EC 1.8.2.7) that was purified from the haloalkaliphilic sulfur-oxidizing bacterium of the genus Thioalkalivibrio ubiquitous in saline alkaline soda lakes. The copper cluster is formed by three copper ions located at the corners of a near-isosceles triangle and facilitates a direct thiocyanate conversion into cyanate, elemental sulfur, and two reducing equivalents without involvement of molecular oxygen. A molecular mechanism of catalysis is suggested based on high-resolution three-dimensional structures, electron paramagnetic resonance (EPR) spectroscopy, quantum mechanics/molecular mechanics (QM/MM) simulations, kinetic studies, and the results of site-directed mutagenesis.


Subject(s)
Bacterial Proteins/chemistry , Catalytic Domain , Copper/chemistry , Ectothiorhodospiraceae/enzymology , Oxidoreductases/chemistry , Sulfur-Reducing Bacteria/enzymology , Biocatalysis , Electron Spin Resonance Spectroscopy , Hydrogen-Ion Concentration , Oxidation-Reduction , Oxygen/chemistry , Sulfur/chemistry
2.
FEBS J ; 279(21): 4052-61, 2012 Nov.
Article in English | MEDLINE | ID: mdl-22935005

ABSTRACT

UNLABELLED: Octaheme nitrite reductase from the haloalkaliphilic bacterium Thioalkalivibrio paradoxus was isolated and characterized. A comparative structural and functional analysis of two homologous octaheme nitrite reductases from closely related Thioalkalivibrio species was performed. It was shown that both enzymes have similar catalytic properties, owing to high structural similarity. Both enzymes are characterized by specific structural features distinguishing them from pentaheme cytochrome c nitrite reductases, such as the Tyr-Cys bond in the active site, the hexameric structure resulting in the formation of a void space inside the hexamer, and the product channel that opens into the void interior space of the hexamer. It is suggested that these specific structural features are responsible for the higher nitrite reductase activity, the greater preference for nitrite than for sulfite as a substrate, and the wider pH range of the catalytic activity of octaheme nitrite reductases than of pentaheme homologs. DATABASE: Nucleotide sequence data are available in the GenBank database under the accession number HQ665012.1. Structural data are available in the RCSB Protein Data Bank database under the accession numbers 3SXQ and 3TTB STRUCTURED DIGITAL ABSTRACT: TvPaR and TvPaR bind by x-ray crystallography (View interaction).


Subject(s)
Ectothiorhodospiraceae/enzymology , Heme/chemistry , Nitrite Reductases/chemistry , Nitrite Reductases/metabolism , Nitrites/metabolism , Sulfites/metabolism , Catalysis , Catalytic Domain , Crystallography, X-Ray , Models, Molecular , Protein Binding , Protein Conformation , Substrate Specificity
3.
Acta Crystallogr D Biol Crystallogr ; 68(Pt 2): 144-53, 2012 Feb.
Article in English | MEDLINE | ID: mdl-22281743

ABSTRACT

Octahaem cytochrome c nitrite reductase from Thioalkalivibrio nitratireducens (TvNiR), like the previously characterized pentahaem nitrite reductases (NrfAs), catalyzes the six-electron reductions of nitrite to ammonia and of sulfite to sulfide. The active site of both TvNiR and NrfAs is formed by the lysine-coordinated haem and His, Tyr and Arg residues. The distinguishing structural feature of TvNiR is the presence of a covalent bond between the CE2 atom of the catalytic Tyr303 and the S atom of Cys305, which might be responsible for the higher nitrite reductase activity of TvNiR compared with NrfAs. In the present study, a new modified form of the enzyme (TvNiRb) that contains an additional covalent bond between Tyr303 CE1 and Gln360 CG is reported. Structures of TvNiRb in complexes with phosphate (1.45 Šresolution) and sulfite (1.8 Šresolution), the structure of TvNiR in a complex with nitrite (1.83 Šresolution) and several additional structures were determined. The formation of the second covalent bond by Tyr303 leads to a decrease in both the nitrite and sulfite reductase activities of the enzyme. Tyr303 is located at the exit from the putative proton-transport channel to the active site, which is absent in NrfAs. This is an additional argument in favour of the involvement of Tyr303 as a proton donor in catalysis. The changes in the activity of cytochrome c nitrite reductases owing to the formation of Tyr-Cys and Tyr-Gln bonds may be associated with changes in the pK(a) value of the catalytic tyrosine.


Subject(s)
Cytochromes a1/chemistry , Cytochromes a1/metabolism , Cytochromes c1/chemistry , Cytochromes c1/metabolism , Ectothiorhodospiraceae/enzymology , Nitrate Reductases/chemistry , Nitrate Reductases/metabolism , Tyrosine/chemistry , Catalytic Domain , Crystallography, X-Ray , Ectothiorhodospiraceae/chemistry , Models, Molecular , Nitrites/metabolism , Phosphates/metabolism , Protein Binding , Sulfites/metabolism , Tyrosine/metabolism
4.
Acta Crystallogr D Biol Crystallogr ; 66(Pt 10): 1043-7, 2010 Oct.
Article in English | MEDLINE | ID: mdl-20944237

ABSTRACT

The structures of complexes of octahaem cytochrome c nitrite reductase from the bacterium Thioalkalivibrio nitratireducens (TvNiR) with the substrate sulfite (1.4 Å resolution; R(cryst) = 0.126) and the inhibitor cyanide (1.55 Å resolution; R(cryst) = 0.148) have been established. The complex with sulfite was prepared by the reduction of the protein crystal with sodium dithionite. The sulfite ion is bound to the iron ion of the catalytic haem through the S atom. The Fe-S distance is 2.24 Å. The structure of the cyanide complex with full occupancy of the ligand site was established for the first time for cytochrome c nitrite reductases. The cyanide ion is bound to the catalytic haem iron through the C atom. The Fe-C distance is 1.91 Å and the Fe-C-N angle is 171°. The sulfite reductase activity of TvNiR was measured at different pH values. The activity is 0.02 µmol of HS(-) per minute per milligram at pH 7.0; it decreases with increasing pH and is absent at pH 9.0.


Subject(s)
Cytochrome c Group/metabolism , Ectothiorhodospira/enzymology , Multiprotein Complexes/metabolism , Nitrite Reductases/metabolism , Crystallography, X-Ray , Cyanides/metabolism , Cytochrome c Group/chemistry , Enzyme Inhibitors , Hydrogen-Ion Concentration , Multiprotein Complexes/chemistry , Nitrite Reductases/chemistry , Protein Binding , Protein Conformation , Substrate Specificity , Sulfites/metabolism
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