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Oxidative reactions in normal and sickle hemoglobin-lipid mixtures under various conditions.

机译:正常和镰状血红蛋白-脂质混合物在各种条件下的氧化反应。

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摘要

Hemoglobin (Hb) can undergo autoxidation in erythrocytes releasing Superoxide anion (O{dollar}{bsol}sb2{bsol}sp-{dollar}) radicals. These radicals initiate lipid and protein oxidation causing membrane damage. Our understanding of Hb toxicity and oxidative stress in erythrocytes under physiological and pathophysiological conditions will depend on our knowledge on individual oxidative reactions and the exact role of reaction products generated from Hb oxidation and lipid peroxidation in erythrocytes. Therefore I studied the oxidative reactions in a Hb-small unilamellar vesicle (SUV) system under physiological (35 mM phosphate and 110 mM NaCl at pH 7.4 (P110N 7.4)) and non-physiological (10 mM tris and 5 mM KCl at pH 6.5 buffer (T5K 6.5)) conditions. Under P110N 7.4 buffer I observed adult Hb (HbA) oxidation, destruction of heme, release of free iron (total, in the aqueous phase and lipid phase) and formation of malondialdehyde (MDA). I also observed that Hb undergo cross-linking immediately ({dollar}{bsol}sim{dollar}5 min) after mixing with SUVs. The Hb cross-linking was directly related to Hb oxidation and occurred due to the oxygen radicals that was produced in the process of oxidation reacting with the amino acids at the site of their generation. The heme destruction also occurred due to radicals reacting with the heme and releasing free iron. The iron was present in both the aqueous phase and the lipid phase. Most of the free iron was present in the lipid phase with the increasing the incubation time. Following the t{dollar}{bsol}sb{lcub}1/2{rcub}{dollar} values of total free iron release and MDA formation it was clear that free iron initiated the lipid peroxidation. Sickle Hb (HbS) in SUVs showed similar results as HbA in high salt and high pH (P110N 7.4) conditions. When these experiments were performed in low salt and low pH conditions (T5K 6.5) we observed significant differences between HbA and HbS in oxyHb disappearance and Hb cross-linking and heme transfer into SUV. As the osmolarity was increased by adding KCl we observed a decrease in heme transferred. Similar effects were observed when low Cl{dollar}{bsol}sp-{dollar}, phosphate buffers were used. The percentage of heme transfer was less in phosphate buffers as compared in tris buffers. The differences between HbA and HbS was observed only under low osmolarity and pH in the presence of SUVs. Therefore if sickle RBCs undergo cellular changes decreasing the pH and ionic strength SUVs HbS will show higher rates of oxidation than HbA. It was also clear that the membrane abnormalities that observed in sickle membrane is most likely due to the hemachrome (denatured Hb) build up in the membrane and not due to lipid peroxidation.
机译:血红蛋白(Hb)可在红细胞中发生自氧化,从而释放超氧阴离子(O {dollar} {bsol} sb2 {bsol} sp- {dollar})自由基。这些自由基引发脂质和蛋白质氧化,导致膜损伤。我们对生理和病理生理条件下红细胞中Hb毒性和氧化应激的了解将取决于我们对单个氧化反应的了解以及由Hb氧化和脂质过氧化作用产生的反应产物在红细胞中的确切作用。因此,我研究了在生理性(pH 7.4的35 mM磷酸盐和110 mM NaCl的pH 7.4(P110N 7.4))和非生理性(pH 6.5的10 mM tris和5 mM KCl的Hb小单层囊泡(SUV)系统中的氧化反应。缓冲区(T5K 6.5))条件。在P110N 7.4缓冲液下,我观察到成人Hb(HbA)氧化,血红素破坏,游离铁释放(全部,在水相和脂质相中)和丙二醛(MDA)的形成。我还观察到Hb与SUV混合后会立即发生交联({dollar} {bsol} sim {dollar} 5分钟)。 Hb交联与Hb氧化直接相关,是由于氧化过程中产生的氧自由基与氨基酸的生成部位发生反应而发生的。血红素的破坏也由于自由基与血红素反应并释放出游离铁而发生。铁同时存在于水相和脂质相中。随着孵育时间的增加,大多数游离铁都存在于脂质相中。遵循总游离铁释放和MDA形成的t {dollar} {bsol} sb {lcub} 1/2 {rcub} {dollar}值,很明显游离铁引发了脂质过氧化。 SUV中的镰刀Hb(HbS)在高盐和高pH(P110N 7.4)条件下显示出与HbA类似的结果。当这些实验在低盐和低pH条件下(T5K 6.5)进行时,我们观察到HbA和HbS在oxyHb消失和Hb交联以及血红素向SUV转移方面的显着差异。通过加入氯化钾增加渗透压,我们观察到血红素转移的减少。当使用低Cl {dollar} {bsol} sp- {dollar}磷酸盐缓冲液时,观察到类似的效果。与tris缓冲液相比,磷酸盐缓冲液中的血红素转移百分比更少。 HbA和HbS之间的差异只有在低渗透压和pH值且存在SUV的情况下才能观察到。因此,如果镰刀红细胞经历细胞变化,降低SUV的pH和离子强度,HbS的氧化率将高于HbA。同样清楚的是,在镰刀状膜中观察到的膜异常很可能是由于血色素(变性的血红蛋白)在膜中积聚而不是由于脂质过氧化引起的。

著录项

  • 作者

    Dias, Merita Nirmali.;

  • 作者单位

    Loyola University of Chicago.;

  • 授予单位 Loyola University of Chicago.;
  • 学科 Chemistry Biochemistry.; Biology Animal Physiology.; Biology Cell.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 p.7503
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学 ;
  • 关键词

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