Fujimoto S, Murakami K, Ohara A
J Biochem. 1985 Jun;97(6):1777-84. doi: 10.1093/oxfordjournals.jbchem.a135236.
Chemical modification studies of manganese(III)-containing acid phosphatase [EC 3.1.3.2] were carried out to investigate the contributions of specific amino-acid side-chains to the catalytic activity. Incubation of the enzyme with N-ethylmaleimide at pH 7.0 caused a significant loss of the enzyme activity. The inactivation followed pseudo-first-order kinetics. Double log plots of pseudo-first-order rate constant vs. concentration gave a straight line with a slope of 1.02, suggesting that the reaction of one molecule of reagent per active site is associated with activity loss. The enzyme was protected from inactivation by the presence of molybdate or phosphate ions. Amino acid analyses of the N-ethylmaleimide-modified enzyme showed that the 96%-inactivated enzyme had lost about one histidine and one-half lysine residue per enzyme subunit without any significant decrease in other amino acids, and also demonstrated that loss of catalytic activity occurred in parallel with the loss of histidine residue rather than that of lysine residue. Molybdate ions also protected the enzyme against modification of the histidine residue. The enzyme was inactivated by photooxidation mediated by methylene blue according to pseudo-first-order kinetics. The pH profile of the inactivation rates of the enzyme showed that an amino acid residue having a pKa value of approximately 7.2 was involved in the inactivation. These studies indicate that at least one histidine residue per enzyme subunit participates in the catalytic function of Mn(III)-acid phosphatase.
对含锰(III)酸性磷酸酶[EC 3.1.3.2]进行了化学修饰研究,以探究特定氨基酸侧链对催化活性的贡献。在pH 7.0条件下,将该酶与N - 乙基马来酰亚胺温育导致酶活性显著丧失。失活遵循假一级动力学。假一级速率常数与浓度的双对数图给出一条斜率为1.02的直线,表明每个活性位点一分子试剂的反应与活性丧失相关。钼酸盐或磷酸根离子的存在可保护该酶不被失活。对N - 乙基马来酰亚胺修饰的酶进行氨基酸分析表明,96%失活的酶每个酶亚基损失了约一个组氨酸和半个赖氨酸残基,而其他氨基酸没有显著减少,并且还表明催化活性的丧失与组氨酸残基的丧失而非赖氨酸残基的丧失平行发生。钼酸根离子也保护该酶不被组氨酸残基修饰。该酶通过亚甲基蓝介导的光氧化作用按照假一级动力学失活。该酶失活速率的pH曲线表明,一个pKa值约为7.2的氨基酸残基参与了失活过程。这些研究表明,每个酶亚基至少有一个组氨酸残基参与锰(III)酸性磷酸酶的催化功能。