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Structure-activity correlations in highly preorganized dicopper catechol oxidase model systems

机译:高度预组织的Dicopper儿茶酚氧化酶模型系统中的结构活性相关性

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摘要

New dicopper(II) complexes with pyrazolate-derived compartmental ligands that bear pyridyl or triazacyclononane chelate arms have been prepared and fully characterized, including several single-crystal X-ray analyses. These complexes complement a series of dicopper compounds with related pyrazolate ligands reported earlier. Modifications of the ligand scaffold are shown to control molecular features such as the Cu-Cu separation and electronic and spectroscopic properties. Catecholase activity of the new complexes has been probed using 3,5-di-fert-butylcatechol (DTBC) as the test substrate, revealing Michaelis-Menten-type kinetics with drastic differences in activity for the assortment of complexes. Their common skeletal motif based on the pyrazolate bridge allowed us to deduce some relationship between activity and Cu...Cu separation as well as Cu~(II)/Cu~(I) redox potentials. A dramatic effect of the buffer medium on reactivity has been observed.
机译:带有吡啶基或三氮杂环壬烷螯合臂的吡唑酸酯衍生的间隔配体的新双铜(II)配合物已制备并得到了充分表征,包括几种单晶X射线分析。这些配合物与先前报道的相关吡唑酸酯配体互补了一系列双铜化合物。已显示出配体支架的修饰可控制分子特征,例如Cu-Cu分离以及电子和光谱性质。已使用3,5-二叔丁基邻苯二酚(DTBC)作为测试底物探测了新配合物的儿茶酚酶活性,揭示了Michaelis-Menten型动力学,其配合物的活性存在巨大差异。它们基于吡唑酸酯桥的常见骨架基序使我们可以推断出活性与Cu ... Cu分离以及Cu〜(II)/ Cu〜(I)氧化还原电位之间的某些关系。已经观察到缓冲介质对反应性的显着影响。

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