H. Iwase et al., Thiol-oxidizing agent diamide and acidic pH enhance lipid peroxidation of rat heart mitochondria and cardiolipin-cytochrome c complex, IUBMB LIFE, 51(1), 2001, pp. 39-43
In this study, we investigated lipid peroxidation in rat heart mitochondria
hydrolyzed by phospholipase A2 (PLA2) and lipid peroxidation in a mitochon
drial-mimetic lipid peroxidation system, where phospholipids such as cardio
lipin (CL) and cytochrome c (Cyt c) were first mixed together and then PLA2
and calcium chloride were added to the mixture (CL Cyt c-PLA2 system). Pro
duction of hydroperoxy and hydroxy compounds of linoleic acid (LA)(1) in th
e mixture was measured by high performance liquid chromatography, The ratio
of the total amount of hydroperoxy and hydroxy compounds of LA to that of
LA was calculated as an index for lipid peroxidation (1000 x mol/mol). The
index for lipid peroxidation in the rat heart mitochondria hydrolyzed by PL
A2 at the physiological pH of 7.4 was 22.8 +/- 2.2 (mean +/- SD, n = 4) and
that at the acidic pH of 6.7 was 41.8 +/- 2,0, In the presence of the thio
l (SH)-oxidizing agent diamide, the index was 47.0 +/- 2.6 (pH 7,4), In the
CG-Cyt c-PLA2 system, lipid peroxidation seemed to be due to three mechani
sms: (1) oxidation of the LA (nonreleased form) constituent of CL by Cyt c
(oxidation of CL by Cyt c); (2) oxidation of free LA, released from CL, inv
olving the oxidation of CL by Cyt c (free LA oxidation by the CL-Cyt c comp
lex); and (3) oxidation of free LA, released from CL, by Cyt c and calcium
ions (LA-Cyt c-Ca system). The lipid peroxidation of the CL-Cyt c-PLA2 syst
em was also enhanced by the addition of diamide and by an acidic pH of 6,7,
The fact that the SH-oxidizing agent enhanced the lipid peroxidation in th
e CG Cyt c-PLA2 system suggested that SH groups in the hemoprotein played a
n inhibitory role in lipid peroxidation in the system.