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Copper incorporation into recombinant CotA laccase from Bacillus subtilis: characterization of fully copper loaded enzymes

机译:铜掺入枯草芽孢杆菌的重组CotA漆酶中:完全负载铜的酶的表征

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摘要

The copper content of recombinant CotA laccase from Bacillus subtilis produced by Escherichia coli cells is shown to be strongly dependent on the presence of copper and oxygen in the culture media. In copper-supplemented media, a switch from aerobic to microaerobic conditions leads to the synthesis of a recombinant holoenzyme, while the maintenance of aerobic conditions results in the synthesis of a copper-depleted population of proteins. Strikingly, cells grown under microaerobic conditions accumulate up to 80-fold more copper than aerobically grown cells. In vitro copper incorporation into apoenzymes was monitored by optical and electron paramagnetic resonance (EPR) spectroscopy. This analysis reveals that copper incorporation into CotA laccase is a sequential process, with the type 1 copper center being the first to be reconstituted, followed by the type 2 and the type 3 copper centers. The copper reconstitution of holoCotA derivatives depleted in vitro with EDTA results in the complete recovery of the native conformation as monitored by spectroscopic, kinetic and thermal stability analysis. However, the reconstitution of copper to apo forms produced in cultures under aerobic and copper-deficient conditions resulted in incomplete recovery of biochemical properties of the holoenzyme. EPR and resonance Raman data indicate that, presumably, folding in the presence of copper is indispensable for the correct structure of the trinuclear copper-containing site.
机译:已显示由大肠杆菌细胞产生的来自枯草芽孢杆菌的重组CotA漆酶的铜含量强烈依赖于培养基中铜和氧的存在。在补充铜的培养基中,从有氧条件向微需氧条件的转换导致了重组全酶的合成,而有氧条件的维持导致了铜缺乏蛋白的合成。令人惊讶的是,在有氧条件下生长的细胞比需氧生长的细胞积累的铜最多高80倍。通过光学和电子顺磁共振(EPR)光谱监测体外铜掺入脱辅酶的过程。该分析表明,将铜结合到CotA漆酶中是一个顺序过程,第一种类型的铜中心是第一个被重构的,其次是2型和3型铜中心。通过光谱,动力学和热稳定性分析监测,在体外用EDTA消耗的holoCotA衍生物的铜重构可完全恢复天然构象。但是,在需氧和缺铜条件下,将铜还原成培养物中产生的载脂蛋白形式导致全酶生化特性的恢复不完全。 EPR和共振拉曼数据表明,对于三核含铜位点的正确结构,推测在铜的存在下折叠是必不可少的。

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  • 来源
    《JBIC Journal of Biological Inorganic Chemistry》 |2008年第2期|183-193|共11页
  • 作者单位

    Instituto de Tecnologia Química e Biológica Universidade Nova de Lisboa Av. Da República 2781-901 Oeiras Portugal;

    Instituto de Tecnologia Química e Biológica Universidade Nova de Lisboa Av. Da República 2781-901 Oeiras Portugal;

    Instituto de Tecnologia Química e Biológica Universidade Nova de Lisboa Av. Da República 2781-901 Oeiras Portugal;

    Sekr. PC14 Max-Volmer-Laboratorium für Biophysikalische Chemie Institut für Chemie Technische Universität Berlin Strasse des 17. Juni 135 10623 Berlin Germany;

    Sekr. PC14 Max-Volmer-Laboratorium für Biophysikalische Chemie Institut für Chemie Technische Universität Berlin Strasse des 17. Juni 135 10623 Berlin Germany;

    Instituto de Tecnologia Química e Biológica Universidade Nova de Lisboa Av. Da República 2781-901 Oeiras Portugal;

    Instituto de Tecnologia Química e Biológica Universidade Nova de Lisboa Av. Da República 2781-901 Oeiras Portugal;

    Centro de Biomedicina Molecular e Estrutural Universidade do Algarve Campus de Gambelas 8005-139 Faro Portugal;

    Instituto de Tecnologia Química e Biológica Universidade Nova de Lisboa Av. Da República 2781-901 Oeiras Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CotA laccase; Multicopper oxidases; Copper incorporation; Copper homeostasis;

    机译:CotA漆酶;多铜氧化酶;铜掺入;铜稳态;

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