Chiu D T, van den Berg J, Kuypers F A, Hung I J, Wei J S, Liu T Z
Chang Gung College of Medicine and Technology, Tao-yuan, Taiwan, ROC.
Free Radic Biol Med. 1996;21(1):89-95. doi: 10.1016/0891-5849(96)00035-4.
Experiments were performed to delineate the biochemical mechanism of hemoglobin (Hb)-catalyzed lipid peroxidation in human red blood cells (RBCs). Using a modified Langmuir trough lipid monolayer technique, we found that oxidized Hb induced an increase in lipid monolayer surface pressure, suggesting that oxidized Hb readily releases its heme moiety into the lipid monolayer. To confirm our interpretation that oxidized Hb readily releases its heme moiety, we monitored the fluorescence of Hb tryptophan upon oxidation of Hb. We found an increase in Hb fluorescence in the aqueous phase of our monolayer system after the addition of H2O2. The increase in fluorescence should reflect the departure of heme from globin due to a decrease in fluorescent quenching effect by the heme moiety. The rate of increase in lipid monolayer surface pressure upon Hb oxidation differed from Hb to Hb with an order of Hb E > F > S > A. The ability of various Hbs to affect lipid peroxidation in the RBC membrane, as monitored by the parinaric acid oxidation technique, followed this same order. In addition, hemin was shown to be a more potent catalyst of lipid peroxidation in RBC membrane than nonheme irons.
开展实验以阐明血红蛋白(Hb)催化人红细胞(RBC)脂质过氧化的生化机制。使用改良的朗缪尔槽脂质单层技术,我们发现氧化型Hb会导致脂质单层表面压力增加,这表明氧化型Hb易于将其血红素部分释放到脂质单层中。为证实我们关于氧化型Hb易于释放其血红素部分的解释,我们监测了Hb氧化时Hb色氨酸的荧光。在添加H2O2后,我们发现单层系统水相中Hb荧光增强。荧光增强应反映出血红素因血红素部分荧光猝灭效应降低而与珠蛋白分离。Hb氧化时脂质单层表面压力的增加速率因Hb种类而异,顺序为Hb E > F > S > A。通过紫黄质酸氧化技术监测,各种Hb影响RBC膜脂质过氧化的能力遵循相同顺序。此外,已表明血红素比非血红素铁更有效地催化RBC膜脂质过氧化。