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Journal Abstract Search


303 related items for PubMed ID: 20307490

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  • 2. Comparative genomics and site-directed mutagenesis support the existence of only one input channel for protons in the C-family (cbb3 oxidase) of heme-copper oxygen reductases.
    Hemp J, Han H, Roh JH, Kaplan S, Martinez TJ, Gennis RB.
    Biochemistry; 2007 Sep 04; 46(35):9963-72. PubMed ID: 17676874
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  • 3. The unusual redox properties of C-type oxidases.
    Melin F, Xie H, Meyer T, Ahn YO, Gennis RB, Michel H, Hellwig P.
    Biochim Biophys Acta; 2016 Dec 04; 1857(12):1892-1899. PubMed ID: 27664317
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  • 6. Complex interactions of carbon monoxide with reduced cytochrome cbb3 oxidase from Pseudomonas stutzeri.
    Pitcher RS, Brittain T, Watmough NJ.
    Biochemistry; 2003 Sep 30; 42(38):11263-71. PubMed ID: 14503876
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  • 10. Activation of O2 and NO in heme-copper oxidases - mechanistic insights from computational modelling.
    Blomberg MRA.
    Chem Soc Rev; 2020 Oct 19; 49(20):7301-7330. PubMed ID: 33006348
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  • 14. Water-hydroxide exchange reactions at the catalytic site of heme-copper oxidases.
    Brändén M, Namslauer A, Hansson O, Aasa R, Brzezinski P.
    Biochemistry; 2003 Nov 18; 42(45):13178-84. PubMed ID: 14609328
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  • 15. Evolutionary migration of a post-translationally modified active-site residue in the proton-pumping heme-copper oxygen reductases.
    Hemp J, Robinson DE, Ganesan KB, Martinez TJ, Kelleher NL, Gennis RB.
    Biochemistry; 2006 Dec 26; 45(51):15405-10. PubMed ID: 17176062
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  • 19. The structure of cbb3 cytochrome oxidase provides insights into proton pumping.
    Buschmann S, Warkentin E, Xie H, Langer JD, Ermler U, Michel H.
    Science; 2010 Jul 16; 329(5989):327-30. PubMed ID: 20576851
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