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探究质子进入反硝化副球菌细胞色素c氧化酶中K通道的途径。

Probing the access of protons to the K pathway in the Paracoccus denitrificans cytochrome c oxidase.

作者信息

Richter Oliver-M H, Dürr Katharina L, Kannt Aimo, Ludwig Bernd, Scandurra Francesca M, Giuffrè Alessandro, Sarti Paolo, Hellwig Petra

机构信息

Institut für Biochemie, Abteilung Molekulare Genetik, Johann Wolfgang Goethe-Universität, Frankfurt-am-Main, Germany.

出版信息

FEBS J. 2005 Jan;272(2):404-12. doi: 10.1111/j.1742-4658.2004.04480.x.

Abstract

In recent studies on heme-copper oxidases a particular glutamate residue in subunit II has been suggested to constitute the entry point of the so-called K pathway. In contrast, mutations of this residue (E78(II)) in the Paracoccus denitrificans cytochrome c oxidase do not affect its catalytic activity at all (E78(II)Q) or reduce it to about 50% (E78(II)A); in the latter case, the mutation causes no drastic decrease in heme a(3) reduction kinetics under anaerobic conditions, when compared to typical K pathway mutants. Moreover, both mutant enzymes retain full proton-pumping competence. While oxidized-minus-reduced Fourier-transform infrared difference spectroscopy demonstrates that E78(II) is indeed addressed by the redox state of the enzyme, absence of variations in the spectral range characteristic for protonated aspartic and glutamic acids at approximately 1760 to 1710 cm(-1) excludes the protonation of E78(II) in the course of the redox reaction in the studied pH range, although shifts of vibrational modes at 1570 and 1400 cm(-1) reflect the reorganization of its deprotonated side chain at pH values greater than 4.8. We therefore conclude that protons do not enter the K channel via E78(II) in the Paracoccus enzyme.

摘要

在最近关于血红素 - 铜氧化酶的研究中,有人提出亚基II中的一个特定谷氨酸残基构成了所谓K途径的入口点。相比之下,反硝化副球菌细胞色素c氧化酶中该残基(E78(II))的突变根本不影响其催化活性(E78(II)Q),或者将其催化活性降低至约50%(E78(II)A);在后一种情况下,与典型的K途径突变体相比,该突变在厌氧条件下不会导致血红素a(3)还原动力学急剧下降。此外,两种突变酶都保留了完全的质子泵功能。虽然氧化态减去还原态傅里叶变换红外差光谱表明E78(II)确实受酶的氧化还原状态影响,但在大约1760至1710 cm(-1)处质子化天冬氨酸和谷氨酸特征光谱范围内没有变化,这排除了在所研究的pH范围内氧化还原反应过程中E78(II)的质子化,尽管在1570和1400 cm(-1)处振动模式的变化反映了其去质子化侧链在pH值大于4.8时的重组。因此,我们得出结论,在反硝化副球菌酶中质子不会通过E78(II)进入K通道。

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