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PDBsum entry 1e83

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Electron transport PDB id
1e83
Contents
Protein chain
126 a.a. *
Ligands
HEC
Waters ×153
* Residue conservation analysis

References listed in PDB file
Key reference
Title Unprecedented proximal binding of nitric oxide to heme: implications for guanylate cyclase.
Authors D.M.Lawson, C.E.Stevenson, C.R.Andrew, R.R.Eady.
Ref. EMBO J, 2000, 19, 5661-5671. [DOI no: 10.1093/emboj/19.21.5661]
PubMed id 11060017
Abstract
Microbial cytochromes c' contain a 5-coordinate His-ligated heme that forms stable adducts with nitric oxide (NO) and carbon monoxide (CO), but not with dioxygen. We report the 1.95 and 1.35 A resolution crystal structures of the CO- and NO-bound forms of the reduced protein from Alcaligenes xylosoxidans. NO disrupts the His-Fe bond and binds in a novel mode to the proximal face of the heme, giving a 5-coordinate species. In contrast, CO binds 6-coordinate on the distal side. A second CO molecule, not bound to the heme, is located in the proximal pocket. Since the unusual spectroscopic properties of cytochromes c' are shared by soluble guanylate cyclase (sGC), our findings have potential implications for the activation of sGC induced by the binding of NO or CO to the heme domain.
Figure 1.
Figure 1 Ribbon representation of a single subunit of the reduced Axcyt c' structure showing the position of the heme. Also depicted are the side chains of the proximal His, Leu16 and the two Cys residues that form thioether bridges to the heme. The Leu blocks access to the vacant sixth coordination site in the distal pocket. The location of the crystallographic 2-fold axis is indicated, which is perpendicular to the plane of the paper. A 180° rotation of this subunit about the 2-fold axis generates the second subunit of the functional dimer. The structure is colored with respect to sequence number, starting with blue at the N-terminus and finishing with red at the C-terminus. This figure was produced using MOLSCRIPT (Kraulis, 1991) and Raster3D (Merritt and Bacon, 1997).
Figure 3.
Figure 3 Omit difference maps for the (A) NO- and (B) CO-bound Axcyt c' structures contoured at 3.5 . All the displayed atoms were omitted from the refinements (see Materials and methods). However, Arg124 was retained in the refinement, in order to remove distracting density, in particular from the NO ligand. The view is chosen to emphasize the flattening of the heme plane upon binding of CO. The atoms are colored according to their temperature factors, which all lie roughly in the range 10–40 Å^2, where dark blue indicates a low value increasing through light blue, dark green, light green, yellow and orange, to red, which indicates a high value. Note that the side chain of His120 in the NO-bound structure and the side chain of Leu16 and the propionate group A in the CO-bound structure are less well defined in the electron density and have relatively high thermal parameters. See main text for a further explanation.
The above figures are reprinted from an Open Access publication published by Macmillan Publishers Ltd: EMBO J (2000, 19, 5661-5671) copyright 2000.
Secondary reference #1
Title Three-Dimensional structure of cytochrome c' From two alcaligenes species and the implications for four-Helix bundle structures.
Authors A.J.Dobbs, B.F.Anderson, H.R.Faber, E.N.Baker.
Ref. Acta Crystallogr D Biol Crystallogr, 1996, 52, 356-368. [DOI no: 10.1107/S0907444995008328]
PubMed id 15299707
Full text Abstract
Figure 1.
Fig. 1. Variation of the crystallographic R factor with resolution for the cytochromes c' from Alcaligenes sp (full line) and Alcaligenes denitrificans (broken line). he teoretical variation for coordinate errors of (a) 0.10, (b) 0.15 and (c) 0.20,~ (Luzzati, 1952) is shown.
Figure 6.
Fig. 6. Stereoview showing the environment of the conserved Argl2 side chain and te inner of the two haem propionate groups. Hdrogen bonds are shown with broken ines.
Figure 14.
IMET . L P A A F P E G
The above figures are reproduced from the cited reference with permission from the IUCr
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