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Oxidative aggregation of ceruloplasmin induced by hydrogen peroxide is prevented by pyruvate.

机译:丙酮酸可防止过氧化氢诱导的铜蓝蛋白的氧化聚集。

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摘要

Ceruloplasmin (CP) is a blue copper glycoprotein with multiple physiological functions including ferroxidase and oxidase activities. CP is also an important serum oxygen free radical (OFR) scavenger and antioxidant, exerting cardioprotective and antifibrillatory actions. Although it has been reported that CP activities can be inhibited by OFR, the intimate mechanism of this inactivation is still not clear. Exposure of bovine CP to H2O2 induced inactivation of the protein as well as structural alterations as indicated by loss of protein bands by SDS-PAGE. Both phenomena were H2O2 concentration and time dependent. HPLC gel filtration and capillary electrophoresis analysis of CP treated with H2O2 revealed an aggregation of the protein. Quantification of dityrosine formation by fluorescence indicated the involvement of dityrosine bridging, which could be responsible for aggregation of CP under oxidative attack. Oxidative damage to CP under H2O2 treatment was completely prevented by pyruvate, suggesting that the association of CP with antioxidants could extend the range of the protective action of this protein.
机译:铜蓝蛋白(CP)是一种蓝色铜糖蛋白,具有多种生理功能,包括铁氧化酶和氧化酶活性。 CP也是重要的血清氧自由基(OFR)清除剂和抗氧化剂,发挥心脏保护和抗纤颤作用。尽管有报道说CP活性可以被OFR抑制,但是这种失活的内在机制仍不清楚。牛CP暴露于H2O2会导致蛋白质失活以及结构改变,如通过SDS-PAGE丧失蛋白质条带所示。两种现象都与H2O2浓度和时间有关。用H2O2处理的CP的HPLC凝胶过滤和毛细管电泳分析显示了蛋白质的聚集。通过荧光定量二氢酪氨酸的形成表明二氢酪氨酸桥接的参与,这可能是在氧化攻击下CP的聚集的原因。丙酮酸完全阻止了H2O2处理对CP的氧化损伤,这表明CP与抗氧化剂的结合可以扩展该蛋白的保护作用范围。

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