Bound water in the proton translocation mechanism of the haem‐copper oxidases
Open Access
- 8 September 1997
- journal article
- research article
- Published by Wiley in FEBS Letters
- Vol. 414 (2) , 275-280
- https://doi.org/10.1016/s0014-5793(97)01003-x
Abstract
We address the molecular mechanism by which the haem‐copper oxidases translocate protons. Reduction of O2 to water takes place at a haem iron‐copper (CuB) centre, and protons enter from one side of the membrane through a ‘channel’ structure in the enzyme. Statistical‐mechanical calculations predict bound water molecules within this channel, and mutagenesis experiments show that breaking this water structure impedes proton translocation. Hydrogen‐bonded water molecules connect the channel further via a conserved glutamic acid residue to a histidine ligand of CuB. The glutamic acid side chain may have to move during proton transfer because proton translocation is abolished if it is forced to interact with a nearby lysine or arginine. Perturbing the CuB ligand structure shifts an infrared mode that may be ascribed to the OH stretch of bound water. This is sensitive to mutations of the glutamic acid, supporting its connectivity to the histidine. These results suggest key roles of bound water, the glutamic acid and the histidine copper ligand in the mechanism of proton translocation.Keywords
This publication has 19 references indexed in Scilit:
- The Whole Structure of the 13-Subunit Oxidized Cytochrome c Oxidase at 2.8 ÅScience, 1996
- A statistical mechanical description of biomolecular hydrationFaraday Discussions, 1996
- Identification of a "peroxy" intermediate in cytochrome bo3 of Escherichia coli.Biochemistry, 1995
- Structures of Metal Sites of Oxidized Bovine Heart Cytochrome c Oxidase at 2.8 ÅScience, 1995
- Structure at 2.8 Å resolution of cytochrome c oxidase from Paracoccus denitrificansNature, 1995
- Proton transfer in cytochrome bo3 ubiquinol oxidase of Escherichia coli: Second-site mutations in subunit I that restore proton pumping in the mutant Asp135.fwdarw.AsnBiochemistry, 1995
- Substitution of asparagine for aspartate-135 in subunit I of the cytochrome bo ubiquinol oxidase of Escherichia coli eliminates proton-pumping activityBiochemistry, 1993
- Site-directed mutagenesis of highly conserved residues in helix VIII of subunit I of the cytochrome bo ubiquinol oxidase from Escherichia coli: An amphipathic transmembrane helix that may be important in conveying protons to the binuclear centerBiochemistry, 1993
- Oxygen activation and the conservation of energy in cell respirationNature, 1992
- Cytochrome oxidase (a3) heme and copper observed by low-temperature Fourier transform infrared spectroscopy of the CO complex.Proceedings of the National Academy of Sciences, 1981