Marmocchi F, Mavelli I, Rigo A, Stevanato R, Bossa F, Rotilio G
Biochemistry. 1982 Jun 8;21(12):2853-6. doi: 10.1021/bi00541a007.
Bovine erythrocyte superoxide dismutase (BESOD) has been extensively succinylated with succinic anhydride. Succinylated BESOD has an identical electron paramagnetic resonance (EPR) spectrum but only 10% as much activity as the native enzyme, showing that an increase of the negative charge of the protein surface lowers the activity without alteration of the active site structure. On the other hand, sodium dodecyl sulfate (NaDodSO4)-polyacrylamide gel electrophoresis indicates that interaction between subunits is strongly weakened by succinylation. NaDodSO4 has no effect on either the activity or EPR spectrum of the protein. BESOD was immobilized by coupling to a Sepharose matrix with no alteration of the EPR spectrum. Succinylation of the immobilized protein led to detachment from the gel of approximately 50% of the molecules, as estimated by parallel EPR measurements of the gel and activity determinations on the eluate. It is concluded the succinylation leads to dissociation of BESOD into nondenatured subunits, having lower activity than the native protein possibly because of charge effects on the enzyme-O2-interaction.
牛红细胞超氧化物歧化酶(BESOD)已用琥珀酸酐进行了广泛的琥珀酰化修饰。琥珀酰化的BESOD具有相同的电子顺磁共振(EPR)光谱,但活性仅为天然酶的10%,这表明蛋白质表面负电荷的增加会降低活性,而不改变活性位点结构。另一方面,十二烷基硫酸钠(NaDodSO4)-聚丙烯酰胺凝胶电泳表明,琥珀酰化会强烈削弱亚基之间的相互作用。NaDodSO4对该蛋白质的活性或EPR光谱均无影响。通过与琼脂糖基质偶联将BESOD固定化,EPR光谱未发生改变。通过对凝胶的平行EPR测量和对洗脱液的活性测定估计,固定化蛋白质的琥珀酰化导致约50%的分子从凝胶上脱离。得出的结论是,琥珀酰化导致BESOD解离为未变性的亚基,其活性低于天然蛋白质,这可能是由于电荷对酶与O2相互作用的影响。