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PMID: 16012169 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

pH-Dependent interaction of cytochrome c with mitochondrial mimetic membranes: the role of an array of positively charged amino acids.

The Journal of biological chemistry ·Vol. 280 ·No. 41 ·2005-10-14 ·Pages 34709-17

Kawai C, Prado FM, Nunes GL, Di Mascio P, Carmona-Ribeiro AM, Nantes IL

Abstract

The interaction of cytochrome c (cyt c) with mitochondrial mimetic vesicles of 1,2-dipalmitoyl-sn-glycero-3-phosphocholine, 1,2-dipalmitoyl-sn-glycero-3-phosphoethanolamine, and heart cardiolipin (PCPECL) was investigated over the 7.4-6.2 pH range by means of turbidimetry and photon correlation spectroscopy. In the presence of cyt c, the decrease of pH induced an increase in vesicle turbidity and mean diameter resulting from vesicle fusion as determined by a rapid decrease in the excimer/monomer ratio of 2-(10-(1-pyrene)-decanoyl)-phosphatidylcholine (PyPC). N-acetylated cyt c and protamine, a positively charged protein, increased vesicle turbidity in a pH-independent manner, whereas albumin did not affect PCPECL vesicle turbidity. pH-dependent turbidity kinetics revealed a role for cyt c-ionizable groups with a pK(a)((app)) of approximately 7.0. The carbethoxylation of these groups by diethylpyrocarbonate prevented cyt c-induced vesicle fusion, although cyt c association to vesicles remained unaffected. Matrix-assisted laser desorption ionization time-of-flight analysis revealed that Lys-22, Lys-27, His-33, and Lys-87 cyt c residues were the main targets for carbethoxylation performed at low pH values (<7.5). In fact, these amino acid residues belong to clusters of positively charged amino acids that lower the pK(a). Thus, at low pH, protonation of these invariant and highly conserved amino acid residues produced a second positively charged region opposite to the Lys-72 and Lys-73 region in the cyt c structure. These two opposing sites allowed two vesicles to be brought together by the same cyt c molecule for fusion. Therefore, a novel pH-dependent site associating cyt c to mitochondrial mimetic membranes was established in this study.

MeSH Terms
Albumins/chemistry Amino Acids/chemistry Animals Binding Sites Carbon/chemistry Cardiolipins/chemistry Cytochromes c/chemistry,metabolism Histidine/chemistry Horses Hydrogen-Ion Concentration Intracellular Membranes/metabolism Lysine/chemistry Lysophospholipids/chemistry Membrane Potentials Mitochondria/metabolism Mitochondrial Membranes/metabolism Models, Biological Models, Molecular Myocardium/metabolism Phosphatidylethanolamines/chemistry Phosphorylcholine/chemistry Photons Protamines/chemistry Spectrophotometry Static Electricity
Chemicals
2-(10-(1-pyrene)decanoyl)phosphatidylcholine Albumins Amino Acids Cardiolipins Lysophospholipids Phosphatidylethanolamines Protamines Phosphorylcholine Histidine Carbon 1,2-dipalmitoyl-sn-glycero-3-thiophosphocholine Cytochromes c Lysine
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Kawai Cintia
Centro Interdisciplinar de Investigação Bioquímica, Universidade de Mogi das Cruzes, Mogi das Cruzes, São Paulo CEP 08780-911, Brazil.
Prado Fernanda M
Nunes Gabriel L C
Di Mascio Paolo
Carmona-Ribeiro Ana M
Nantes Iseli L
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2005-10-14
Epub
2005-00-11
Pages
34709-17
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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