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Hendriks J, Gohlke U, Saraste M (February 1998). "From NO to OO: nitric oxide and dioxygen in bacterial respiration". Journal of Bioenergetics and Biomembranes. 30 (1): 15–24. doi:10.1023/A:1020547225398. PMID9623801.
Cheesman MR, Zumft WG, Thomson AJ (March 1998). "The MCD and EPR of the heme centers of nitric oxide reductase from Pseudomonas stutzeri: evidence that the enzyme is structurally related to the heme-copper oxidases". Biochemistry. 37 (11): 3994–4000. doi:10.1021/bi972437y. PMID9521721.
Hino T, Matsumoto Y, Nagano S, Sugimoto H, Fukumori Y, Murata T, Iwata S, Shiro Y (December 2010). "Structural basis of biological N2O generation by bacterial nitric oxide reductase". Science. 330 (6011): 1666–70. doi:10.1126/science.1195591. PMID21109633.
nih.gov
pubmed.ncbi.nlm.nih.gov
Hendriks J, Warne A, Gohlke U, Haltia T, Ludovici C, Lübben M, Saraste M (September 1998). "The active site of the bacterial nitric oxide reductase is a dinuclear iron center". Biochemistry. 37 (38): 13102–9. doi:10.1021/bi980943x. PMID9748316.
Hendriks J, Gohlke U, Saraste M (February 1998). "From NO to OO: nitric oxide and dioxygen in bacterial respiration". Journal of Bioenergetics and Biomembranes. 30 (1): 15–24. doi:10.1023/A:1020547225398. PMID9623801.
Cheesman MR, Zumft WG, Thomson AJ (March 1998). "The MCD and EPR of the heme centers of nitric oxide reductase from Pseudomonas stutzeri: evidence that the enzyme is structurally related to the heme-copper oxidases". Biochemistry. 37 (11): 3994–4000. doi:10.1021/bi972437y. PMID9521721.