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血红素O和血红素A的生物合成不受铜的调控。

The biosynthesis of heme O and heme A is not regulated by copper.

作者信息

Morrison M Scott, Cricco Julia A, Hegg Eric L

机构信息

Department of Chemistry, University of Utah, Salt Lake City, Utah 84112-0850, USA.

出版信息

Biochemistry. 2005 Sep 20;44(37):12554-63. doi: 10.1021/bi050893d.

Abstract

Heme A is an obligatory cofactor in all eukaryotic and many prokaryotic cytochrome c oxidase (CcO) enzymes. Despite its obvious importance to CcO and the electron transport pathway, essentially nothing is known concerning the regulation of heme A. Because CcO is the only natural target for heme A and copper is also required for CcO activity, it was postulated that copper might regulate heme A homeostasis. Work reported previously demonstrated that there is often a strong connection between copper and iron homeostasis in general, and circumstantial evidence pointed to a possible specific link between copper and heme A. To address this question, we conducted experiments to determine rigorously whether copper plays a role in heme A homeostasis. The two enzymes responsible for the conversion of heme B to heme A, heme O synthase (HOS) and heme A synthase (HAS), were separately genomically epitope-tagged in Saccharomyces cerevisiae, and their expression under various copper conditions was quantified by Western blot analysis. These results demonstrated that the sum of transcription, translation, and stability of HOS and HAS were independent of copper. Additionally, the effects of intracellular copper concentrations on the activity of HOS and HAS from Bacillus subtilis (expressed in Escherichia coli) and Rhodobacter sphaeroides were examined by analysis of cellular heme extracts. No trends with respect to intracellular copper were observed. In combination, our results demonstrate that intracellular copper levels do not affect the transcription, translation, stability, or activity of either HOS or HAS.

摘要

血红素A是所有真核生物和许多原核生物细胞色素c氧化酶(CcO)中的必需辅因子。尽管它对CcO和电子传递途径具有明显的重要性,但关于血红素A的调节基本上一无所知。由于CcO是血红素A的唯一天然靶点,且CcO活性也需要铜,因此有人推测铜可能调节血红素A的体内平衡。先前报道的研究表明,一般来说,铜和铁的体内平衡之间通常存在紧密联系,且有间接证据表明铜和血红素A之间可能存在特定联系。为了解决这个问题,我们进行了实验,以严格确定铜是否在血红素A的体内平衡中发挥作用。在酿酒酵母中,负责将血红素B转化为血红素A的两种酶,即血红素O合酶(HOS)和血红素A合酶(HAS),分别在基因组上进行了表位标记,并通过蛋白质印迹分析对它们在各种铜条件下的表达进行了定量。这些结果表明,HOS和HAS的转录、翻译和稳定性总和与铜无关。此外,通过分析细胞血红素提取物,研究了细胞内铜浓度对来自枯草芽孢杆菌(在大肠杆菌中表达)和球形红杆菌的HOS和HAS活性的影响。未观察到与细胞内铜相关的趋势。综合来看,我们的结果表明细胞内铜水平不会影响HOS或HAS的转录、翻译、稳定性或活性。

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