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Lipid peroxidation associated protein damage in rat brain crude synaptosomal fraction mediated by iron and ascorbate.

机译:铁和抗坏血酸介导的大鼠脑粗突触体组分中脂质过氧化相关蛋白损伤。

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摘要

In crude synaptosomal fractions from rat brain exposed to iron and ascorbate, enhanced lipid peroxidation (more than 3-fold compared to control), loss of protein thiols up to the extent of 40% compared to control, increased incorporation of carbonyl groups into proteins (more than 4.5-fold compared to control) and non-disulphide covalent cross-linking of membrane proteins have been observed. The phenomena are not inhibited by catalase or hydroxyl radical scavengers like mannitol or dimethyl sulphoxide. However, chain breaking antioxidants like alpha-tocopherol and butylated hydroxytoluene prevent both lipid peroxidation and accompanying protein oxidation. It is suggested that in this system lipid peroxidation propagated by the decomposition of preformed lipid hydroperoxides by iron and ascorbate is the primary event and products of the peroxidation process cause secondary protein damage. In view of high ascorbate content of brain and availability of several transition metals, such ascorbate mediated oxidative damage may be relevant in the aetiopathogenesis of several neurodegenerative disorders as well as ageing of brain.
机译:在暴露于铁和抗坏血酸的大鼠脑中的粗突触体级分中,脂质过氧化作用增强(与对照相比,是三倍以上),与对照相比,蛋白质硫醇的损失高达40%,羰基基团向蛋白质的结合增加(与对照相比,其分子量是对照的4.5倍以上),并且已经观察到膜蛋白的非二硫键共价交联。该现象不受过氧化氢酶或甘露醇或二甲基亚砜等羟基自由基清除剂的抑制。然而,诸如α-生育酚和丁基化羟基甲苯之类的链断裂抗氧化剂既可以防止脂质过氧化,也可以防止蛋白质氧化。提示在该系统中,通过铁和抗​​坏血酸盐分解预先形成的脂质氢过氧化物而传播的脂质过氧化是主要事件,并且过氧化过程的产物会引起次级蛋白质破坏。鉴于脑中高抗坏血酸含量和几种过渡金属的可用性,例如抗坏血酸介导的氧化损伤可能与几种神经退行性疾病的发病机理以及脑衰老有关。

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