1pbx

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Revision as of 14:09, 8 November 2007 by OCA (talk | contribs) (New page: left|200px<br /> <applet load="1pbx" size="450" color="white" frame="true" align="right" spinBox="true" caption="1pbx, resolution 2.5Å" /> '''HAEMOGLOBIN OF THE A...)
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File:1pbx.gif


1pbx, resolution 2.5Å

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HAEMOGLOBIN OF THE ANTARCTIC FISH PAGOTHENIA BERNACCHII: AMINO ACID SEQUENCE, OXYGEN EQUILIBRIA AND CRYSTAL STRUCTURE OF ITS CARBONMONOXY DERIVATIVE

OverviewOverview

The Antarctic fish Pagothenia bernacchii has one major haemoglobin, Hb1, (over 95% of the total blood content). Hb1 has a strong alkaline Bohr, effect and at low pH exhibits the reduced ligand affinity and, co-operativity that comprise the Root effect. We have determined the, complete amino acid sequence of P. bernacchii Hb1 and also the structure, of its carbonmonoxy derivative by X-ray crystallography, to a resolution, of 2.5 A. The crystallographic R-factor of the refined structure is 18%., The three-dimensional structure of this fish haemoglobin is similar to, that of human haemoglobin A, with a root-mean-square difference in, main-chain atom positions of 1.4 A after superimposition of the two, structures, despite only 48% homology of their amino acid sequences, (including insertion of a single residue in the CD region of the fish, alpha-chain). Large structural differences occur only at the N and C, termini of both the alpha- and beta-chains. Neither these nor other, smaller structural differences provide any obvious explanation of the Root, effect of this or other fish haemoglobins.

About this StructureAbout this Structure

1PBX is a Protein complex structure of sequences from Trematomus bernacchii with HEM and CMO as ligands. Full crystallographic information is available from OCA.

ReferenceReference

Haemoglobin of the antarctic fish Pagothenia bernacchii. Amino acid sequence, oxygen equilibria and crystal structure of its carbonmonoxy derivative., Camardella L, Caruso C, D'Avino R, di Prisco G, Rutigliano B, Tamburrini M, Fermi G, Perutz MF, J Mol Biol. 1992 Mar 20;224(2):449-60. PMID:1560461

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