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Comparative resistance of the 20S and 26S proteasome to oxidative stress

机译:20S和26S蛋白酶体对氧化应激的比较抗性

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Oxidatively modified ferritin is selectively recognized and degraded by the 20S proteasome. Concentrations of hydrogen peroxide (H2O2) higher than 10 mu cmol/mg of protein are able to prevent proteolytic degradation. Exposure of the protease to high amounts of oxidants (H2O2, peroxynitrite and hypochlorite) inhibits the enzymic activity of the 20S proteasome towards the fluorogenic peptide succinyl-leucine-leucine-valine-tyrosine-methylcoumarylamide (Suc-LLVY-MCA), as well as the proteolytic degradation of normal and oxidant-treated ferritin. Fifty per cent inhibition of the degradation of the protein substrates was achieved using 40 mu mol of H2O2/mg of proteasome. No change in the composition of the enzyme was revealed by electrophoretic analysis up to concentrations of 120 mu mol of H2O2/mg of proteasome. In further experiments, it was found that the 26S proteasome, the ATP- and ubiquitin-dependent form of the proteasomal system, is much more susceptible to oxidative stress. Whereas degradation of the fluorogenic peptide, Suc-LLVY-MCA, by the 20 S proteasome was inhibited by 50 % with 12 mu mol of H2O2/mg, 3 mu mol of H2O2/mg was enough to inhibit ATP-stimulated degradation by the 26S proteasome by 50 %. This loss in activity could be followed by the loss of band intensity in the non-denaturing gel. Therefore we concluded that the 20S proteasome was more resistant to oxidative stress than the ATP- and ubiquitin-dependent 26S proteasome. Furthermore, we investigated the activity of both proteases in K562 cells after H2O2 treatment. Lysates from K562 cells are able to degrade oxidized ferritin at a higher rate than non-oxidized ferritin, in an ATP-independent manner. This effect could be followed even after treatment of the cells with H2O2 up to a concentration of 2 mM. The lactacystin-sensitive ATP-stimulated degradation of the fluorogenic peptide Suc-LLVY-MCA declined, after treatment of the cells with 1 mM H2O2, to the same level as that obtained without ATP stimulation. Therefore, we conclude that the regulation of the 20 S proteasome by various regulators takes place during oxidative stress. This provides further evidence for the role of the 20S proteasome in the secondary antioxidative defences of mammalian cells. [References: 26]
机译:氧化修饰的铁蛋白被20S蛋白酶体选择性识别并降解。高于10μcmol / mg蛋白质的过氧化氢(H2O2)浓度能够防止蛋白水解降解。蛋白酶暴露于大量氧化剂(H2O2,过氧亚硝酸盐和次氯酸盐)会抑制20S蛋白酶体对荧光肽琥珀酰-亮氨酸-亮氨酸-缬氨酸-酪氨酸-甲基香豆素酰胺(Suc-LLVY-MCA)的酶活性正常和氧化剂处理的铁蛋白的蛋白水解降解。使用40μmol H2O2 / mg蛋白酶体可抑制蛋白质底物的降解50%。通过电泳分析,直到浓度为120μmolH 2 O 2 / mg蛋白酶体,酶的组成没有变化。在进一步的实验中,发现26S蛋白酶体(蛋白酶体系统的ATP和泛素依赖性形式)对氧化应激的敏感性更高。 12μmolH2O2 / mg对20S蛋白酶体的荧光肽Suc-LLVY-MCA的降解抑制了50%,而3μmolH2O2 / mg足以抑制26S对ATP刺激的降解。蛋白酶体的50%。这种活性的丧失可能是非变性凝胶中带强度的丧失。因此,我们得出的结论是20S蛋白酶体比ATP和泛素依赖性26S蛋白酶体对氧化应激的抵抗力更高。此外,我们研究了过氧化氢处理后K562细胞中两种蛋白酶的活性。来自K562细胞的裂解物能够以不依赖ATP的方式以比未氧化铁蛋白更高的速率降解氧化铁蛋白。即使在用H2O2处理细胞至2 mM的浓度后,也可以跟踪此效果。用1 mM H2O2处理细胞后,荧光肽Suc-LLVY-MCA的受乳腺腺苷敏感的ATP刺激的降解下降至与没有ATP刺激时相同的水平。因此,我们得出结论,各种调节剂对20 S蛋白酶体的调节发生在氧化应激过程中。这为20S蛋白酶体在哺乳动物细胞的次级抗氧化防御中的作用提供了进一步的证据。 [参考:26]

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