Medda R, Padiglia A, Finazzi Agrò A, Pedersen J Z, Lorrai A, Floris G
Institute of Biological Chemistry, Cagliari University, Italy.
Eur J Biochem. 1997 Dec 1;250(2):377-82. doi: 10.1111/j.1432-1033.1997.0377a.x.
Copper amine oxidase from lentil seedlings was shown to be able to catalyze the oxidative deamination of the indoleamines tryptamine, 5-hydroxytryptamine, and 5-methoxytryptamine. These compounds showed saturation kinetics with Km values as normal substrates, but their oxidation led to irreversible loss of enzyme activity suggesting a covalent interaction with the enzyme, most probably through its cofactor 6-hydroxydopa (2,4,5-trihydroxyphenylalanine). These indoleamines acted as irreversible inhibitors of the enzyme only in the absence of oxygen but they brought about changes in the electronic spectra of the enzyme both in aerobiosis and in anaerobiosis. This study reports on the mechanism by which these compounds inhibit lentil amine oxidase which involves first the oxidation of indoleamines bound to 6-hydroxydopa followed by the formation of an irreversible covalent derivative. The same inhibitory mechanism could possibly lead to inactivation of mammalian amine oxidases involved in serotonin neurotransmitter metabolism in conditions of ischemia or hypoxia.
来自小扁豆幼苗的铜胺氧化酶能够催化吲哚胺色胺、5-羟色胺和5-甲氧基色胺的氧化脱氨反应。这些化合物表现出正常底物的饱和动力学,其Km值存在,但它们的氧化导致酶活性不可逆丧失,这表明与酶发生了共价相互作用,很可能是通过其辅因子6-羟基多巴(2,4,5-三羟基苯丙氨酸)。这些吲哚胺仅在无氧条件下作为酶的不可逆抑制剂,但它们在需氧和厌氧条件下都会引起酶电子光谱的变化。本研究报道了这些化合物抑制小扁豆胺氧化酶的机制,该机制首先涉及与6-羟基多巴结合的吲哚胺的氧化,随后形成不可逆的共价衍生物。在缺血或缺氧条件下,相同的抑制机制可能导致参与血清素神经递质代谢的哺乳动物胺氧化酶失活。