Binding and Reduction of Sulfite by Cytochrome c Nitrite Reductase

dc.contributor.authorLukat, Peer
dc.contributor.authorRudolf, Marc
dc.contributor.authorStach, Petra
dc.contributor.authorMesserschmidt, Albrecht
dc.contributor.authorKroneck, Peter M. H.
dc.contributor.authorSimon, Jörg
dc.contributor.authorEinsle, Oliver
dc.date.accessioned2017-03-09T14:11:53Z
dc.date.available2017-03-09T14:11:53Z
dc.date.issued2008-02eng
dc.description.abstractPentaheme cytochrome c nitrite reductase (ccNiR) catalyzes the six-electron reduction of nitrite to ammonia as the final step in the dissimilatory pathway of nitrate ammonification. It has also been shown to reduce sulfite to sulfide, thus forming the only known link between the biogeochemical cycles of nitrogen and of sulfur. We have found the sulfite reductase activity of ccNiR from Wolinella succinogenes to be significantly smaller than its nitrite reductase activity but still several times higher than the one described for dissimilatory, siroheme-containing sulfite reductases. To compare the sulfite reductase activity of ccNiR with our previous data on nitrite reduction, we determined the binding mode of sulfite to the catalytic heme center of ccNiR from W. succinogenes at a resolution of 1.7 A. Sulfite and nitrite both provide a pair of electrons to form the coordinative bond to the Fe(III) active site of the enzyme, and the oxygen atoms of sulfite are found to interact with the three active site protein residues conserved within the enzyme family. Furthermore, we have characterized the active site variant Y218F of ccNiR that exhibited an almost complete loss of nitrite reductase activity, while sulfite reduction remained unaffected. These data provide a first direct insight into the role of the first sphere of protein ligands at the active site in ccNiR catalysis.eng
dc.description.versionpublishedeng
dc.identifier.doi10.1021/bi7021415eng
dc.identifier.pmid18201106eng
dc.identifier.urihttps://kops.uni-konstanz.de/handle/123456789/37940
dc.language.isoengeng
dc.subject.ddc570eng
dc.titleBinding and Reduction of Sulfite by Cytochrome c Nitrite Reductaseeng
dc.typeJOURNAL_ARTICLEeng
dspace.entity.typePublication
kops.citation.bibtex
@article{Lukat2008-02Bindi-37940,
  year={2008},
  doi={10.1021/bi7021415},
  title={Binding and Reduction of Sulfite by Cytochrome c Nitrite Reductase},
  number={7},
  volume={47},
  issn={0006-2960},
  journal={Biochemistry},
  pages={2080--2086},
  author={Lukat, Peer and Rudolf, Marc and Stach, Petra and Messerschmidt, Albrecht and Kroneck, Peter M. H. and Simon, Jörg and Einsle, Oliver}
}
kops.citation.iso690LUKAT, Peer, Marc RUDOLF, Petra STACH, Albrecht MESSERSCHMIDT, Peter M. H. KRONECK, Jörg SIMON, Oliver EINSLE, 2008. Binding and Reduction of Sulfite by Cytochrome c Nitrite Reductase. In: Biochemistry. 2008, 47(7), pp. 2080-2086. ISSN 0006-2960. eISSN 1520-4995. Available under: doi: 10.1021/bi7021415deu
kops.citation.iso690LUKAT, Peer, Marc RUDOLF, Petra STACH, Albrecht MESSERSCHMIDT, Peter M. H. KRONECK, Jörg SIMON, Oliver EINSLE, 2008. Binding and Reduction of Sulfite by Cytochrome c Nitrite Reductase. In: Biochemistry. 2008, 47(7), pp. 2080-2086. ISSN 0006-2960. eISSN 1520-4995. Available under: doi: 10.1021/bi7021415eng
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    <dcterms:abstract xml:lang="eng">Pentaheme cytochrome c nitrite reductase (ccNiR) catalyzes the six-electron reduction of nitrite to ammonia as the final step in the dissimilatory pathway of nitrate ammonification. It has also been shown to reduce sulfite to sulfide, thus forming the only known link between the biogeochemical cycles of nitrogen and of sulfur. We have found the sulfite reductase activity of ccNiR from Wolinella succinogenes to be significantly smaller than its nitrite reductase activity but still several times higher than the one described for dissimilatory, siroheme-containing sulfite reductases. To compare the sulfite reductase activity of ccNiR with our previous data on nitrite reduction, we determined the binding mode of sulfite to the catalytic heme center of ccNiR from W. succinogenes at a resolution of 1.7 A. Sulfite and nitrite both provide a pair of electrons to form the coordinative bond to the Fe(III) active site of the enzyme, and the oxygen atoms of sulfite are found to interact with the three active site protein residues conserved within the enzyme family. Furthermore, we have characterized the active site variant Y218F of ccNiR that exhibited an almost complete loss of nitrite reductase activity, while sulfite reduction remained unaffected. These data provide a first direct insight into the role of the first sphere of protein ligands at the active site in ccNiR catalysis.</dcterms:abstract>
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kops.sourcefieldBiochemistry. 2008, <b>47</b>(7), pp. 2080-2086. ISSN 0006-2960. eISSN 1520-4995. Available under: doi: 10.1021/bi7021415deu
kops.sourcefield.plainBiochemistry. 2008, 47(7), pp. 2080-2086. ISSN 0006-2960. eISSN 1520-4995. Available under: doi: 10.1021/bi7021415deu
kops.sourcefield.plainBiochemistry. 2008, 47(7), pp. 2080-2086. ISSN 0006-2960. eISSN 1520-4995. Available under: doi: 10.1021/bi7021415eng
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source.periodicalTitleBiochemistryeng

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