首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Cyanide as a copper and quinone-directed inhibitor of amine oxidases from pea seedlings (Pisum sativum) and Arthrobacter globiformis: evidence for both copper coordination and cyanohydrin derivatization of the quinone cofactor
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Cyanide as a copper and quinone-directed inhibitor of amine oxidases from pea seedlings (Pisum sativum) and Arthrobacter globiformis: evidence for both copper coordination and cyanohydrin derivatization of the quinone cofactor

机译:氰化物是豌豆幼苗(Pisum sativum)和球形节杆菌中胺氧化酶的铜和醌定向抑制剂:铜的配位和醌辅因子的氰醇衍生化的证据

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The interactions of cyanide with two copper-containing amine oxidases (CuAOs) from pea seedlings (PSAO) and the soil bacterium Arthrobacter globiformis (AGAO) have been investigated by spectroscopic and kinetic techniques. Previously, we rationalized the effects of azide and cyanide for several CuAOs in terms of copper coordination by these exogenous ligands and their effects on the internal redox equilibrium TPQamr-Cu(II)→←TPQ_(sq)-Cu(I). The mechanism of cyanide inhibition was proposed to occur through complexation to Cu(I), thereby directly competing with O_2 for reoxidation of TPQ. Although cyanide readily and reversibly reacts with quinones, no direct spectroscopic evidence for cyanohydrin derivatization of TPQ has been previously documented for CuAOs. This work describes the first direct spectroscopic evidence, using both model and enzyme systems, for cyanohydrin derivatization of TPQ. Kd values for Cu(II)-CN– and Cu(I)-CN–, as well as the Ki for cyanide inhibition versus substrate amine, are reported for PSAO and AGAO. In spite of cyanohydrin derivatization of the TPQ cofactor in these enzymes, the uncompetitive inhibition of amine oxidation is determined to arise almost exclusively through CN– complexation of Cu(I).
机译:通过光谱学和动力学技术研究了氰化物与豌豆幼苗(PSAO)和土壤细菌球状节杆菌(AGAO)中的两种含铜胺氧化酶(CuAOs)的相互作用。以前,我们根据这些外源配体在铜配位方面合理化了叠氮化物和氰化物对几种CuAO的影响,以及它们对内部氧化还原平衡TPQamr-Cu(II)→←TPQ_(sq)-Cu(I)的影响。氰化物抑制的机理被认为是通过与Cu(I)的络合而发生的,从而直接与O_2竞争TPQ的再氧化。尽管氰化物容易和可逆地与醌反应,但先前尚未有关于CuAOs的直接光谱学证据证明TPQ的氰醇衍生化。这项工作描述了使用模型和酶系统的第一个直接光谱学证据,用于TPQ的氰醇衍生化。报告了PSAO和AGAO的Cu(II)-CN–和Cu(I)-CN–的Kd值以及氰化物对底物胺的抑制作用的Ki。尽管在这些酶中TPQ辅因子发生了氰醇衍生化,但竞争性的胺氧化抑制作用几乎只能通过CN(-)络合Cu(I)来确定。

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