Crystal structure of asian elephant (Elephas maximus) cyano-metmyoglobin at 1.78-Å resolution

dc.contributor.authorBisig, Daniel A.deu
dc.contributor.authorDi Iorio, Ernesto E.deu
dc.contributor.authorDiederichs, Kay
dc.contributor.authorWinterhalter, Kaspar H.deu
dc.contributor.authorPiontek, Klausdeu
dc.date.accessioned2011-03-24T17:38:48Zdeu
dc.date.available2011-03-24T17:38:48Zdeu
dc.date.issued1995deu
dc.description.abstractThe crystal structure of Asian elephant cyano-metmyoglobin which has a glutamine instead of the usual distal site histidine has been determined to high resolution. In addition to this replacement, the substitution of a conserved leucine residue in position 29(B10) at the distal side by a phenylalanine was unambiguously identified based on the available electron density. The suspicion, that there were errors in the original sequence which has caused some confusion, is thus confirmed. Comparison with other myoglobin structures in various ligated forms reveals an essentially unchanged tertiary structure in elephant myoglobin despite the two amino acid substitutions in the heme pocket. Our current structural model shows that the Ne2 atom of Gln64(E7) has moved with respect to the corresponding nitrogen position of His64(E7) in the CO complex of sperm whale myoglobin. The newly assigned residue Phe29(B10) penetrates into the distal side of the heme pocket approaching the ligand within van der Waals distance and causing a much more crowded heme pocket compared to other myoglobins. Kinetic properties of Asian elephant myoglobin, wild type, and recombinant sperm whale myoglobins are discussed in relation to the structural consequences of the two amino acid substitutions H64Q and L29F.deu
dc.description.versionpublished
dc.format.mimetypeapplication/pdfdeu
dc.identifier.citationFirst publ. in: Journal of Biological Chemistry 270 (1995), pp. 20754-20762deu
dc.identifier.doi10.1074/jbc.270.35.20754
dc.identifier.ppn273752898deu
dc.identifier.urihttp://kops.uni-konstanz.de/handle/123456789/7953
dc.language.isoengdeu
dc.legacy.dateIssued2007deu
dc.rightsAttribution-NonCommercial-NoDerivs 2.0 Generic
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/2.0/
dc.subject.ddc570deu
dc.titleCrystal structure of asian elephant (Elephas maximus) cyano-metmyoglobin at 1.78-Å resolutioneng
dc.typeJOURNAL_ARTICLEdeu
dspace.entity.typePublication
kops.citation.bibtex
@article{Bisig1995Cryst-7953,
  year={1995},
  doi={10.1074/jbc.270.35.20754},
  title={Crystal structure of asian elephant (Elephas maximus) cyano-metmyoglobin at 1.78-Å resolution},
  number={35},
  volume={270},
  issn={0021-9258},
  journal={Journal of Biological Chemistry},
  pages={20754--20762},
  author={Bisig, Daniel A. and Di Iorio, Ernesto E. and Diederichs, Kay and Winterhalter, Kaspar H. and Piontek, Klaus}
}
kops.citation.iso690BISIG, Daniel A., Ernesto E. DI IORIO, Kay DIEDERICHS, Kaspar H. WINTERHALTER, Klaus PIONTEK, 1995. Crystal structure of asian elephant (Elephas maximus) cyano-metmyoglobin at 1.78-Å resolution. In: Journal of Biological Chemistry. 1995, 270(35), pp. 20754-20762. ISSN 0021-9258. eISSN 1083-351X. Available under: doi: 10.1074/jbc.270.35.20754deu
kops.citation.iso690BISIG, Daniel A., Ernesto E. DI IORIO, Kay DIEDERICHS, Kaspar H. WINTERHALTER, Klaus PIONTEK, 1995. Crystal structure of asian elephant (Elephas maximus) cyano-metmyoglobin at 1.78-Å resolution. In: Journal of Biological Chemistry. 1995, 270(35), pp. 20754-20762. ISSN 0021-9258. eISSN 1083-351X. Available under: doi: 10.1074/jbc.270.35.20754eng
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    <dcterms:abstract xml:lang="deu">The crystal structure of Asian elephant cyano-metmyoglobin which has a glutamine instead of the usual distal site histidine has been determined to high resolution. In addition to this replacement, the substitution of a conserved leucine residue in position 29(B10) at the distal side by a phenylalanine was unambiguously identified based on the available electron density. The suspicion, that there were errors in the original sequence which has caused some confusion, is thus confirmed. Comparison with other myoglobin structures in various ligated forms reveals an essentially unchanged tertiary structure in elephant myoglobin despite the two amino acid substitutions in the heme pocket. Our current structural model shows that the Ne2 atom of Gln64(E7) has moved with respect to the corresponding nitrogen position of His64(E7) in the CO complex of sperm whale myoglobin. The newly assigned residue Phe29(B10) penetrates into the distal side of the heme pocket approaching the ligand within van der Waals distance and causing a much more crowded heme pocket compared to other myoglobins. Kinetic properties of Asian elephant myoglobin, wild type, and recombinant sperm whale myoglobins are discussed in relation to the structural consequences of the two amino acid substitutions H64Q and L29F.</dcterms:abstract>
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