The optical properties of CuA in bovine cytochrome c oxidase determined by low-temperature magnetic-circular-dichroism spectroscopy

Author:

Greenwood C,Hill B C,Barber D,Eglinton D G,Thomson A J

Abstract

The visible-near-i.r.-region m.c.d. (magnetic-circular-dichroism) spectrum recorded at low temperature in the range 450-900 nm is reported for oxidized resting mammalian cytochrome c oxidase. M.c.d. magnetization curves determined at different wavelengths reveal the presence of two paramagnetic species. Curves at 576, 613 and 640 nm fit well to those expected for an x,y-polarized haem transition with g values of 3.03, 2.21 and 1.45, i.e. cytochrome a3+. The m.c.d. features at 515, 785 and 817 nm magnetize as a S = 1/2 paramagnet with average g values close to 2, and simulated m.c.d. magnetization curves obtained by using the observed g values of CuA2+, i.e. 2.18, 2.03 and 1.99, fit well to the experimental observations. The form of the m.c.d. magnetization curve at 466 nm is curious, but it can be explained if CuA2+ and cytochrome a3+ contribute with oppositely signed bands at this wavelength. By comparing the m.c.d. spectrum of the enzyme with that of extracted haem a-bisimidazole complex it has been possible to deconvolute the m.c.d. spectrum of CuA2+, which shows transitions throughout the spectral region from 450 to 950 nm. The m.c.d.-spectral properties of CuA2+ were compared with those of a well-defined type I blue copper centre in azurin isolated from Pseudomonas aeruginosa. The absolute intensities of the m.c.d. signals at equal fields and temperatures for CuA2+ are 10-20-fold greater than those for azurin. The optical spectrum of CuA2+ strongly suggests an assignment as a d9 ion rather than Cu(I) bound to a thiyl radical.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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1. Walking the seven lines: binuclear copper A in cytochrome c oxidase and nitrous oxide reductase;JBIC Journal of Biological Inorganic Chemistry;2017-12-07

2. Calcium ions inhibit reduction of heme a in bovine cytochrome c oxidase;FEBS Letters;2015-12-01

3. Metalloproteins Containing Cytochrome, Iron–Sulfur, or Copper Redox Centers;Chemical Reviews;2014-04-23

4. The CuA site of cytochrome c oxidase;Recueil des Travaux Chimiques des Pays-Bas;2010-09-02

5. CuA centers and their biosynthetic models in azurin;JBIC Journal of Biological Inorganic Chemistry;2010-02-19

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