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微粒体中脂质过氧化物的形成。非血红素铁的作用。

Lipid peroxide formation in microsomes. The role of non-haem iron.

作者信息

Wills E D

出版信息

Biochem J. 1969 Jun;113(2):325-32. doi: 10.1042/bj1130325.

Abstract
  1. Metal ion-chelating agents such as EDTA, o-phenanthroline or desferrioxamine inhibit lipid peroxide formation when rat liver microsomes prepared from homogenates made in pure sucrose are incubated with ascorbate or NADPH. 2. Microsomes treated with metal ion-chelating agents do not form peroxide on incubation unless inorganic iron (Fe(2+) or Fe(3+)) in a low concentration is added subsequently. No other metal ion can replace inorganic iron adequately. 3. Microsomes prepared from sucrose homogenates containing EDTA (1mm) do not form lipid peroxide on incubation with ascorbate or NADPH unless Fe(2+) is added. Washing the microsomes with sucrose after preparation restores most of the capacity to form lipid peroxide. 4. Lipid peroxide formation in microsomes prepared from sucrose is stimulated to a small extent by inorganic iron but to a greater extent if adenine nucleotides, containing iron compounds as a contaminant, are added. 5. The iron contained in normal microsome preparations exists in haem and in non-haem forms. One non-haem component in which the iron may be linked to phosphate is considered to be essential for both the ascorbate system and NADPH system that catalyse lipid peroxidation in microsomes.
摘要
  1. 当用纯蔗糖匀浆制备的大鼠肝微粒体与抗坏血酸或NADPH一起孵育时,诸如乙二胺四乙酸(EDTA)、邻菲罗啉或去铁胺等金属离子螯合剂会抑制脂质过氧化物的形成。2. 用金属离子螯合剂处理过的微粒体在孵育时不会形成过氧化物,除非随后添加低浓度的无机铁(Fe(2+)或Fe(3+))。没有其他金属离子能充分替代无机铁。3. 由含有EDTA(1mM)的蔗糖匀浆制备的微粒体,在与抗坏血酸或NADPH孵育时不会形成脂质过氧化物,除非添加Fe(2+)。制备后用蔗糖洗涤微粒体可恢复大部分形成脂质过氧化物的能力。4. 由蔗糖制备的微粒体中脂质过氧化物的形成在一定程度上受到无机铁的刺激,但如果添加含有作为污染物的含铁化合物的腺嘌呤核苷酸,则刺激程度更大。5. 正常微粒体制剂中所含的铁以血红素和非血红素形式存在。一种铁可能与磷酸盐相连的非血红素成分被认为对催化微粒体脂质过氧化的抗坏血酸系统和NADPH系统都至关重要。

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