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Crosslinking of DNA and proteins induced by protein hydroperoxides.

机译:蛋白质氢过氧化物诱导的DNA和蛋白质的交联。

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摘要

Exposure of DNA to several proteins peroxidized by radiation-generated hydroxyl free radicals resulted in formation of crosslinks between the macromolecules, detected by retardation and broadening of DNA bands in agarose gels. This technique proved suitable for the study of crosslinking of DNA with peroxidized BSA, insulin, apotransferrin and alpha casein, but not with several other proteins, including histones. The crosslinking depended on the presence of intact hydroperoxide groups on the protein, on their number, and on the duration of the interaction with DNA. All DNA samples tested, pBR322, pGEM, lambda/HindIII and pUC18, formed crosslinks with the peroxidized BSA. Sodium chloride and formate prevented the crosslinking if present during incubation of the peroxidized protein and DNA, but had no effect once the crosslinks had formed. The gel shift of the crosslinked DNA was reversed by proteolysis, indicating that the DNA mobility change was due to attachment of protein and that the crosslinking did not induce DNA strand breaks. The metal chelators Desferal and neocuproine reduced the extent of the crosslinking, but did not prevent it. Scavengers of free radicals did not inhibit the crosslink formation. The DNA-protein complex was not disrupted by vigorous agitation, by filtration or by non-ionic detergents. These observations show that the crosslinking of DNA with proteins mediated by protein hydroperoxides is spontaneous and probably covalent, and that it may be assisted by transition metals. It is suggested that formation of such crosslinks in living organisms could account for some of the well-documented forms of biological damage induced by reactive oxygen species-induced oxidative stress.
机译:将DNA暴露于被辐射产生的羟基自由基过氧化的几种蛋白质中,会导致大分子之间形成交联,这是通过琼脂糖凝胶中DNA条带的阻滞和扩展来检测的。事实证明,该技术适用于研究DNA与过氧化的BSA,胰岛素,载脂蛋白和α酪蛋白的交联,但不适用于其他几种蛋白质,包括组蛋白。交联取决于蛋白质上完整氢过氧化物基团的存在,其数量以及与DNA相互作用的持续时间。测试的所有DNA样品,pBR322,pGEM,λ/ HindIII和pUC18,都与过氧化的BSA形成交联。如果在过氧化的蛋白质和DNA孵育过程中存在,则氯化钠和甲酸盐会阻止交联,但一旦形成交联则没有作用。交联的DNA的凝胶位移通过蛋白水解作用被逆转,表明DNA迁移率的变化是由于蛋白质的附着所致,并且交联没有引起DNA链断裂。金属螯合剂Desferal和新cuproine减少了交联的程度,但没有阻止。自由基清除剂不抑制交联形成。剧烈搅拌,过滤或非离子去污剂均不会破坏DNA-蛋白质复合物。这些观察结果表明,DNA与蛋白质氢过氧化物介导的蛋白质的交联是自发的,并且可能是共价的,并且过渡金属可以辅助这种交联。有人认为,在活生物体中形成这种交联键可以解释由活性氧引起的氧化应激所引起的某些生物学形式的文献记载。

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