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Role of respiratory terminal oxidases in the extracellular electron transfer ability of cyanobacteria Sekar N, Wang J, Zhou Y, Fang Y, Yan YJ, Ramasamy RP Biotechnology and Bioengineering, 115(5), 1361, 2018 |
2 |
Hydrogen production by using Rhodobacter capsulatus mutants with genetically modified electron transfer chains Ozturk Y, Yucel M, Daldal F, Mandaci S, Gunduz U, Turker L, Eroglu I International Journal of Hydrogen Energy, 31(11), 1545, 2006 |
3 |
Direct correlationship between proton translocation and growth yield: An analysis of the respiratory chain of Bacillus stearothermophilus Sone N, Tsukita S, Sakamoto J Journal of Bioscience and Bioengineering, 87(4), 495, 1999 |
4 |
Resonance Raman and Fourier transform infrared detection of azide binding to the binuclear center of cytochrome bo(3) oxidase from Escherichia coli Varotsis C, Vamvouka M Journal of Physical Chemistry B, 103(19), 3942, 1999 |
5 |
Structural characterization of the catalytic high-spin heme b of nitric oxide reductase : A resonance Raman study Moenne-Loccoz P, de Vries S Journal of the American Chemical Society, 120(21), 5147, 1998 |
6 |
Construction of a blue copper analogue through iterative rational protein design cycles demonstrates principles of molecular recognition in metal center formation Hellinga HW Journal of the American Chemical Society, 120(39), 10055, 1998 |
7 |
X-Ray-Absorption Studies on the Mixed-Valence and Fully Reduced Forms of the Soluble Cu-A Domains of Cytochrome-C-Oxidase Blackburn NJ, Devries S, Barr ME, Houser RP, Tolman WB, Sanders D, Fee JA Journal of the American Chemical Society, 119(26), 6135, 1997 |