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Inhibition of plant amine oxidases by a novel series of diamine derivatives

机译:一系列新的二胺衍生物对植物胺氧化酶的抑制作用

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A series of N,N'-bis(2-pyridinylmethyl)diamines was synthesized and characterized for their inhibition effects towards plant copper-containing amine oxidase (EC 1.4.3.6) and polyamine oxidase (EC 1.5.3.11), which mediate the catabolic regulation of cellular polyamines. Even though these enzymes catalyze related reactions and, among others, act upon two common substrates (spermidine and spermine), their molecular and kinetic properties are different. They also show a different spectrum of inhibitors. It is therefore of interest to look for compounds providing a dual inhibition (i.e. inhibiting both enzymes with the same inhibition potency), which would be useful in physiological studies involving modulations of polyamine catabolism. The synthesized diamine derivatives comprised from two to eight carbon atoms in the alkyl spacer chain. Kinetic measurements with pea (Pisum sativum) diamine oxidase and oat (Avena sativa) polyamine oxidase demonstrated reversible binding of the compounds at the active sites of the enzymes as they were almost exclusively competitive inhibitors with K_i values ranging from 10~(-5) to 10~(-3) M. In case of oat polyamine oxidase, the K_i values were significantly influenced by the number of methylene groups in the inhibitor molecule. The measured inhibition data are discussed with respect to enzyme structure. For that reason, the oat enzyme was analyzed by de novo peptide sequencing using mass spectrometry and shown to be homologous to polyamine oxidases from barley (isoform 1) and maize. We conclude that some of the studied N,N'-bis(2-pyridinylmethyl)diamines might have a potential to be starting structures in design of metabolic modulators targeted to both types of amine oxidases.
机译:合成了一系列N,N'-双(2-吡啶基甲基)二胺,并对其抑制植物铜的胺氧化酶(EC 1.4.3.6)和聚胺氧化酶(EC 1.5.3.11)进行了表征。调节细胞多胺。尽管这些酶催化相关的反应,并且除其他外作用于两种常见的底物(亚精胺和亚精胺),但它们的分子和动力学性质是不同的。它们还显示出不同范围的抑制剂。因此,令人感兴趣的是寻找提供双重抑制作用(即以相同的抑制能力抑制两种酶)的化合物,其在涉及调节多胺分解代谢的生理研究中将是有用的。合成的二胺衍生物在烷基间隔链中包含两个至八个碳原子。豌豆(Pisum sativum)二胺氧化酶和燕麦(Avena sativa)多胺氧化酶的动力学测量结果表明,化合物在酶活性位点上具有可逆结合,因为它们几乎都是竞争性抑制剂,K_i值在10〜(-5)至10〜(-3)M。在燕麦多胺氧化酶的情况下,K_i值受抑制剂分子中亚甲基数量的影响。关于酶结构讨论了测得的抑制数据。因此,通过使用质谱从头进行肽测序对燕麦酶进行分析,结果表明燕麦酶与大麦(亚型1)和玉米中的多胺氧化酶同源。我们得出的结论是,某些研究的N,N'-双(2-吡啶基甲基)二胺可能具有潜在的结构,可用于设计针对两种胺氧化酶的代谢调节剂。

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