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Probing the Molecular Mechanisms in Copper Amine Oxidases by Generating Heterodimers

机译:通过产生异二聚体探索铜胺氧化酶的分子机理

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摘要

For some homodimeric copper amine oxidases (CuAO), there is suggestive evidence of differential activity at the two active sites implying potential cooperativity between the two monomers. To examine this phenomenon for the Arthrobacter globiformis CuAO (AGAO), we purified a heterodimeric form of the enzyme for comparison with the homodimer. The heterodimer comprises an active wild-type monomer and an inactive monomer in which an active-site tyrosine is mutated to phenylalanine (Y382F). This mutation prevents the formation of the trihydroxyphenylalanine quinone (TPQ) cofactor. A pETDuet vector and a dual fusion tag strategy was used to purify heterodimers (WT/Y382F) from homodimers. Purity was confirmed by western blot and native PAGE analyses. Spectral and kinetic studies support the view that whether there are one or two functional monomers in the dimer, the properties of each functional monomer are the same, thus indicating no communication between the active sites in this bacterial enzyme.
机译:对于某些同型二聚铜胺氧化酶(CuAO),暗示性的证据表明两个活性位点的活性不同,这暗示着两种单体之间的潜在协同作用。为了检查球形节杆菌CuAO(AGAO)的这种现象,我们纯化了该酶的异二聚体形式以与同型二聚体进行比较。异二聚体包含活性野生型单体和其中活性位点酪氨酸突变为苯丙氨酸(Y382F)的非活性单体。此突变可防止三羟基苯丙氨酸醌(TPQ)辅助因子的形成。使用pETDuet载体和双重融合标签策略从同型二聚体中纯化异二聚体(WT / Y382F)。通过蛋白质印迹和天然PAGE分析证实纯度。光谱和动力学研究支持这样的观点,即二聚体中是否存在一个或两个功能性单体,每个功能性单体的性质都相同,因此表明该细菌酶的活性位点之间没有联系。

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