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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The metal function in the reactions of bovine serum amine oxidase with substrates and hydrazine inhibitors
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The metal function in the reactions of bovine serum amine oxidase with substrates and hydrazine inhibitors

机译:牛血清胺氧化酶与底物和肼抑制剂反应中的金属功能

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Bovine serum amine oxidase (BSAO) reacts with 2-hydrazinopyridine, which binds the organic cofactor 2,4,5-trihydroxyphenylalanine quinone, forming a band at 435 nm. The band shifts to 526 nm around 60 deg C, to 415 nm upon denaturation, but only shifts to 429 nm upon Cu~(2+) depletion. Its wavelength and intensity suggest that the adduct has the azo conformation, whilst the same adduct of crystalline Escherichia coli amine oxidase (ECAO) shows the hydrazone conformation in the X-ray structure. The steady state kinetics of aminomethyl- and aminoethylpyridines confirm that the formation of the product Schiff base, analogous to the azo form of the 2-hydrazinopyridine adduct, is not hindered in solution. The structural stability of the adduct in the absence of Cu~(2+) is taken to imply hydrogen bonding of the pyridyl nitrogen to a conserved aspartate, as in the ECAO adduct. Thus the ECAO adduct provides a good model for a transient intermediate leading to formation of the BSAO azo adduct. On the basis of this model and of the catalytic competence of Co~(2+)-substituted BSAO, confirmed by the present data, a catalytic reaction scheme is proposed.
机译:牛血清胺氧化酶(BSAO)与2-肼基吡啶反应,后者结合有机辅因子2,4,5-三羟基苯丙氨酸醌,在435 nm处形成一条带。该带在60℃左右移至526nm,在变性时移至415nm,但仅在Cu〜(2+)耗尽时移至429nm。它的波长和强度表明该加合物具有偶氮构象,而相同的结晶大肠杆菌胺氧化酶(ECAO)的加合物在X射线结构中显示出conform构象。氨基甲基吡啶和氨基乙基吡啶的稳态动力学证实,溶液中不会阻碍产物席夫碱的形成,类似于2-肼基吡啶加合物的偶氮形式。如在ECAO加合物中一样,在不存在Cu〜(2+)的情况下,加合物的结构稳定性被认为是意味着吡啶基氮与保守的天冬氨酸的氢键键合。因此,ECAO加合物为过渡中间体导致BSAO偶氮加合物的形成提供了良好的模型。在该模型的基础上,结合Co〜(2+)取代的BSAO的催化能力,提出了一种催化反应方案。

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