Conformational stability and dynamics of cytochrome c affect its alkaline isomerization

2006 ◽  
Vol 12 (2) ◽  
pp. 257-266 ◽  
Author(s):  
Nataša Tomášková ◽  
Rastislav Varhač ◽  
Gabriel Žoldák ◽  
Lenka Olekšáková ◽  
Dagmar Sedláková ◽  
...  
Biochemistry ◽  
2018 ◽  
Vol 57 (29) ◽  
pp. 4276-4288 ◽  
Author(s):  
Oliver M. Deacon ◽  
Dimitri A. Svistunenko ◽  
Geoffrey R. Moore ◽  
Michael T. Wilson ◽  
Jonathan A.R. Worrall

1975 ◽  
Vol 149 (1) ◽  
pp. 155-167 ◽  
Author(s):  
G W Pettigrew ◽  
I Aviram ◽  
A Schejter

Cytochrome c-557 from Crithidia oncopelti and cytochrome c-558 from Euglena gracilis are mitochondrial cytochromes c that have an atypical haem-binding site. It was of interest to know whether the loss of one thioether bond affected the physicochemical properties of these cytochromes. The thermodynamic parameters of the redox potential were measured. The reaction with imidazole, the kinetics and thermodynamics of the alkaline isomerization and the effect of heating on the visible spectrum are described for the ferricytochromes. The kinetics of the loss of cyanide, the spectral changes occurring on reduction with dithionite at alkaline pH values and the reactivity with CO are described for the ferrocytochromes. In many respects the cytochromes of the two protozoans are very similar to the cytochromes of horse and yeast. The ferricytochromes do, however, undergo a reversible transition to high-spin species on heating, which may be due to the more flexible attachment of the prosthetic group. Similarly the alkaline isomers of cytochromes c-557 and c-558 give rise to high-spin proteins above pH 11. The alkaline isomerization of cytochrome c-558, involves a pKobs. of 10 and kinetics which do not obey the model of Davis et al. [(1974) J. Biol. Chem.249, 2624-2632] for horse cytochrome c. It is proposed that a model involving two ionizations, followed by a conformation change, may fit the data. Both cytochromes c-557 and c-558 combine slowly with CO at neutral pH values.


1974 ◽  
Vol 249 (8) ◽  
pp. 2624-2632
Author(s):  
Linda A. Davis ◽  
Abel Schejter ◽  
George P. Hess

1989 ◽  
Vol 258 (2) ◽  
pp. 599-605 ◽  
Author(s):  
P Tonge ◽  
G R Moore ◽  
C W Wharton

The alkaline transitions of tuna and horse ferricytochromes c and the trifluoroacetyl-lysine derivative of horse ferricytochrome c have been studied by Fourier-transform (FT) i.r. spectroscopy. The spectral perturbations resulting from the transition have been interpreted by reference to FT i.r. data on simple carboxylic-acid-containing compounds and a bacterial cytochrome c551 in which a haem propionate ionizes without causing a significant conformational change. The analysis strongly suggests that ionization of a haem propionate of mitochondrial cytochrome c triggers the alkaline conformation change.


1999 ◽  
Vol 32 (4) ◽  
pp. 519-533 ◽  
Author(s):  
Jun Lu ◽  
Dejian Ma ◽  
Jun Hu ◽  
Wenxia Tang ◽  
Dexu Zhu

Author(s):  
Reinhard Schweitzer-Stenner ◽  
Andrew Hagarman ◽  
Daniel Verbaro ◽  
Jonathan B. Soffer

1990 ◽  
Vol 265 (1) ◽  
pp. 227-232 ◽  
Author(s):  
B Soussi ◽  
A C Bylund-Fellenius ◽  
T Scherstén ◽  
J Ångström

The interaction between ferricytochrome c and cardiolipin was investigated by 1H n.m.r. at 270 MHz. From the phospholipid-induced changes of the protein spectral features it is concluded that the first 2 equivalents of cardiolipin cause a conformational change at the lower part of the solvent-exposed haem edge, involving a rearrangement of the hydrogen-bond interactions of propionate 6, thus partly accounting for the lowered redox potential of cytochrome c in the presence of cardiolipin. The increased value for the pK of the alkaline isomerization of ferricytochrome c shows that cardiolipin stabilizes the native structure of the protein, indicating that the oxidized form assumes ferrocytochrome c-like properties. Peroxidation of cardiolipin by superoxide radical ions drastically decreases the protein binding to this phospholipid. The implications of this finding, and the likelihood of the ternary cytochrome c-cardiolipin-cytochrome c oxidase complex, for the binding of cytochrome c to cytochrome c oxidase in vivo, are discussed in relation to peroxidative damage following ischaemia and reperfusion.


Sign in / Sign up

Export Citation Format

Share Document