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In meso crystal structure of a novel membrane-associated octaheme cytochrome c from the Crenarchaeon Ignicoccus hospitalis.
- Source :
-
The FEBS journal [FEBS J] 2016 Oct; Vol. 283 (20), pp. 3807-3820. Date of Electronic Publication: 2016 Sep 19. - Publication Year :
- 2016
-
Abstract
- The Crenarchaeon Ignicoccus hospitalis lives in symbiosis with Nanoarchaeum equitans providing essential cell components and nutrients to its symbiont. Ignicoccus hospitalis shows an intriguing morphology that points toward an evolutionary role in driving compartmentalization. Therefore, the bioenergetics of this archaeal host-symbiont system remains a pressing question. To date, the only electron acceptor described for I. hospitalis is elemental sulfur, but the organism comprises genes that encode for enzymes involved in nitrogen metabolism, e.g., one nitrate reductase and two octaheme cytochrome c, Igni&#95;0955 (IhOCC) and Igni&#95;1359. Herein, we detail functional and structural studies of the highly abundant IhOCC, including an X-ray crystal structure at 1.7 Å resolution, the first three-dimensional structure of an archaeal OCC. The trimeric IhOCC is membrane associated and exhibits significant structural and functional differences to previously characterized homologs within the hydroxylamine oxidoreductases (HAOs) and octaheme cytochrome c nitrite reductases (ONRs). The positions and spatial arrangement of the eight hemes are highly conserved, but the axial ligands of the individual hemes 3, 6 and 7 and the protein environment of the active site show significant differences. Most notably, the active site heme 4 lacks porphyrin-tyrosine cross-links present in the HAO family. We show that IhOCC efficiently reduces nitrite and hydroxylamine, with possible relevance to detoxification or energy conservation.<br />Database: Structural data are available in the Protein Data Bank under the accession number 4QO5.<br /> (© 2016 Federation of European Biochemical Societies.)
- Subjects :
- Archaeal Proteins genetics
Archaeal Proteins metabolism
Binding Sites
Conserved Sequence
Crystallography, X-Ray
Cytochromes a1 chemistry
Cytochromes a1 genetics
Cytochromes a1 metabolism
Cytochromes c genetics
Cytochromes c metabolism
Cytochromes c1 chemistry
Cytochromes c1 genetics
Cytochromes c1 metabolism
Desulfurococcaceae genetics
Desulfurococcaceae metabolism
Evolution, Molecular
Genes, Archaeal
Heme chemistry
Models, Molecular
Nitrate Reductases chemistry
Nitrate Reductases genetics
Nitrate Reductases metabolism
Protein Structure, Quaternary
Protein Subunits
Static Electricity
Archaeal Proteins chemistry
Cytochromes c chemistry
Desulfurococcaceae chemistry
Subjects
Details
- Language :
- English
- ISSN :
- 1742-4658
- Volume :
- 283
- Issue :
- 20
- Database :
- MEDLINE
- Journal :
- The FEBS journal
- Publication Type :
- Academic Journal
- Accession number :
- 27586496
- Full Text :
- https://doi.org/10.1111/febs.13870