Padiglia A, Medda R, Pedersen J Z, Finazzi Agrò A, Lorrai A, Murgia B, Floris G
Department of Sciences Applied to Biosystems University of Cagliari, I-09042 Cagliari, Italy.
J Biol Inorg Chem. 1999 Oct;4(5):608-13. doi: 10.1007/s007750050384.
The reaction with substrates and carbonyl reagents of native lentil Cu-amine oxidase and its modified forms, i.e. Cu-fully-depleted, Cu-half-reconstituted, Cu-fully-reconstituted, Co-substituted, Ni-substituted and Zn-substituted, has been studied. Upon removal of only one of the two Cu ions, the enzyme loses 50% of its enzymatic activity. Using several substrates, Co-substituted lentil amine oxidase is shown to be active but the k(c) value is different from that of native or Cu-fully-reconstituted enzyme, while K(m) is similar. On the other hand, the Ni- and Zn-substituted forms are catalytically inactive. Enzymatic activity measurements and optical spectroscopy show that only in the Co-substituted enzyme is the organic cofactor 6-hydroxydopa quinone reactive and the enzyme catalytically competent, although less efficient. The Co-substituted amine oxidase does not form the semiquinone radical as an intermediate of the catalytic reaction. While devoid or reduced of catalytic activity, all the enzyme preparations are still able to oxidise two moles of substrate and to release two moles of aldehyde per mole of dimeric enzyme. The results obtained show that although Co-substituted amine oxidase is catalytically competent, copper is essential for the catalytic mechanism.
对天然小扁豆铜胺氧化酶及其修饰形式(即完全去除铜、半重构铜、完全重构铜、钴取代、镍取代和锌取代)与底物及羰基试剂的反应进行了研究。仅去除两个铜离子中的一个时,该酶会丧失50%的酶活性。使用多种底物时,钴取代的小扁豆胺氧化酶显示有活性,但k(c)值与天然或完全重构铜的酶不同,而K(m)相似。另一方面,镍和锌取代形式无催化活性。酶活性测定和光谱学表明,只有钴取代的酶中的有机辅因子6-羟基多巴醌具有反应活性且该酶具有催化活性,尽管效率较低。钴取代的胺氧化酶在催化反应中不形成半醌自由基作为中间体。虽然所有酶制剂缺乏或降低了催化活性,但每摩尔二聚体酶仍能够氧化两摩尔底物并释放两摩尔醛。所得结果表明,尽管钴取代的胺氧化酶具有催化活性,但铜对于催化机制至关重要。