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Oxidation of bovine serum albumin initiated by the Fenton reaction - effect of EDTA, tert-butylhydroperoxide and tetrahydrofuran

机译:Fenton反应引发的牛血清白蛋白氧化-EDTA,叔丁基氢过氧化物和四氢呋喃的作用

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Oxidation of bovine serum albumin (BSA) was investigated using different oxidants: The water-soluble azo-initiator 2,2'azo-bis-(2-amidinopropane) hydrochloride (AAPH), a combination of FeCl3 and ascorbate or the Fenton oxidant consisting of FeCl2, H2O2 and EDTA. In addition, the effects of exogenous compounds such as tert-butyl hydroperoxide (tBuOOH) or solvents such as tetrahydrofuran (THF), often used in model systems, was evaluated. The extent of protein damage was studied by measuring protein carbonyl groups and protein hydroperoxides. The interaction between Fenton oxidant and EDTA, THF or tBuOOH was further characterized using spin trapping electron spin resonance (ESR) spectroscopy. The results showed that the extent of protein oxidation depended on the oxidant used. The Fenton oxidant was the most reactive of the initiators tested. However, in the absence of EDTA, the Fenton system produced protein carbonyl groups on BSA equivalent to that obtained with the other oxidants, however, significantly more protein hydroperoxide was produced. Surprisingly, it was also found that addition of tBuOOH or THF to BSA reduced protein damage when the oxidation was initiated with the Fenton oxidant. ESR investigation showed that EDTA played a key role in the generation of free radicals. It was also revealed that in an EDTA containing system both tBuOOH and THF were able to react with radicals without inducing protein damage in effect protecting BSA from oxidative damage.
机译:使用不同的氧化剂研究了牛血清白蛋白(BSA)的氧化作用:水溶性偶氮引发剂2,2'偶氮双-(2-prop基丙烷)盐酸盐(AAPH),FeCl3和抗坏血酸盐的组合或Fenton氧化剂FeCl2,H2O2和EDTA。此外,评估了模型系统中经常使用的外源性化合物(例如氢过氧化叔丁基(tBuOOH))或溶剂(例如四氢呋喃(THF))的效果。通过测量蛋白质羰基和蛋白质氢过氧化物来研究蛋白质破坏的程度。 Fenton氧化剂与EDTA,THF或tBuOOH之间的相互作用通过自旋陷阱电子自旋共振(ESR)光谱进一步表征。结果表明,蛋白质氧化程度取决于所使用的氧化剂。 Fenton氧化剂是所测试引发剂中反应性最高的。但是,在没有EDTA的情况下,Fenton系统在BSA上产生的蛋白质羰基基团与其他氧化剂所获得的羰基基团相当,但是,产生的蛋白质氢过氧化物明显更多。出人意料的是,还发现当用芬顿氧化剂开始氧化时,向BSA中加入tBuOOH或THF可减少蛋白质损伤。 ESR调查表明,EDTA在自由基生成中起关键作用。还揭示出,在含有EDTA的系统中,tBuOOH和THF都能够与自由基反应而不会引起蛋白质损伤,从而有效地保护了BSA免受氧化损伤。

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