Yamakura F, Suzuki K
Biochim Biophys Acta. 1986 Nov 7;874(1):23-9. doi: 10.1016/0167-4838(86)90097-x.
Pseudomonas Fe-superoxide dismutase (superoxide:superoxide oxidoreductase, EC 1.15.1.1) is inactivated by hydrogen peroxide by a mechanism which exhibits saturation kinetics. The pseudo-first-order rate constant of the inactivation increased with increasing pH, with an inflection point around pH 8.5. Two parameters of the inactivation were measured in the pH range 7.8 to 9.0; the total H2O2 concentration at which the enzyme is half-saturated (K inact) was found to be independent of pH (30 mM) and the maximum rate constant for inactivation (k max) increased progressively with increasing pH, from 3.3 min-1 at pH 7.8 to 21 min-1 at pH 9.0. This evidence suggests the presence of an ionization group (pKa approximately 8.5) which does not participate in the binding of H2O2 but which affects the maximum inactivation rate of the enzyme. The loss of dismutase activity of the Fe-superoxide dismutase is accompanied by a modification of 1.6, 1.1 and 0.9 residues of tryptophan, histidine and cysteine, respectively. Since the amino acid residues of the Cr-substituted enzyme, which has no enzymatic activity, were not modified by H2O2, the active iron of the enzyme is essential for the modification of the amino acid residues.
假单胞菌铁超氧化物歧化酶(超氧化物:超氧化物氧化还原酶,EC 1.15.1.1)可被过氧化氢以呈现饱和动力学的机制失活。失活的准一级速率常数随pH值升高而增加,在pH 8.5左右出现拐点。在pH 7.8至9.0范围内测定了失活的两个参数;发现酶半饱和时的总H2O2浓度(K失活)与pH值无关(30 mM),并且失活的最大速率常数(k最大)随pH值升高而逐渐增加,从pH 7.8时的3.3 min-1增加到pH 9.0时的21 min-1。这一证据表明存在一个电离基团(pKa约为8.5),它不参与H2O2的结合,但影响酶的最大失活速率。铁超氧化物歧化酶的歧化酶活性丧失伴随着色氨酸、组氨酸和半胱氨酸分别有1.6、1.1和0.9个残基的修饰。由于无酶活性的铬取代酶的氨基酸残基未被H2O2修饰,因此酶的活性铁对于氨基酸残基的修饰至关重要。