首页> 外文期刊>Journal of Bioenergetics and Biomembranes >Essential role of copper in the activity and regular periodicity of a recombinant, tumor-associated, cell surface, growth-related and time-keeping hydroquinone (NADH) oxidase with protein disulfide-thiol interchange activity (ENOX2)
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Essential role of copper in the activity and regular periodicity of a recombinant, tumor-associated, cell surface, growth-related and time-keeping hydroquinone (NADH) oxidase with protein disulfide-thiol interchange activity (ENOX2)

机译:铜在具有蛋白质二硫键-硫醇互换活性(ENOX2)的重组,肿瘤相关,细胞表面,生长相关和维持时间的对苯二酚(NADH)氧化酶的活性和规则周期性中的基本作用

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摘要

ECTO-NOX proteins are growth-related cell surface proteins that catalyze both hydroquinone or NADH oxidation and protein disulfide interchange and exhibit time-keeping and prion-like properties. A bacterially expressed truncated recombinant 46 kDa ENOX2 with full ENOX2 activity bound ca 2 moles copper and 2 moles of zinc per mole of protein. Unfolding of the protein in trifluoroacetic acid in the presence of the copper chelator bathocuproine resulted in reversible loss of both enzymatic activities and of a characteristic pattern in the Amide I to Amide II ratios determined by FTIR with restoration by added copper. The H546-V-H together with His 562 form one copper binding site and H582 represents a second copper site as determined from site-directed mutagenesis. Bound copper emerges as having an essential role in ENOX2 both for enzymatic activity and for the structural changes that underly the periodic alternations in activity that define the time-keeping cycle of the protein.
机译:ECTO-NOX蛋白质是与生长相关的细胞表面蛋白质,可催化氢醌或NADH氧化和蛋白质二硫键交换,并具有计时性和病毒性质。具有完整ENOX2活性的细菌表达的截短重组46 kDa ENOX2,每摩尔蛋白质结合约2摩尔铜和2摩尔锌。在铜螯合剂浴铜的存在下,蛋白质在三氟乙酸中的解折叠导致酶活性的可逆损失和由FTIR测定的酰胺I与酰胺II比率的特征模式可逆损失,并通过添加铜来恢复。 H546-V-H与His 562一起形成一个铜结合位点,而H582代表第二个铜位点,由定点诱变确定。束缚的铜在ENOX2中起着至关重要的作用,无论是对于酶活性还是结构变化,这些变化都潜在地决定了蛋白质的保持周期。

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