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1 itrate reductase, a nitrite reductase, and a nitric oxide reductase.
2 ating expression and activity of nitrite and nitric oxide reductase.
3 ights regarding the mechanism of flavodiiron nitric oxide reductases.
4 ible new insights regarding the mechanism of nitric oxide reductases.
5 active reduced active-site form of bacterial nitric oxide reductase, a heme/non-heme diiron(II) compl
6    Inactivation of norEF reduced nitrite and nitric oxide reductase activity and increased the sensit
7 nant D. vulgaris FprA shows robust anaerobic nitric oxide reductase activity in vitro and also protec
8 eases NO production as a result of decreased nitric oxide reductase activity.
9 metric) functional model for heme/Cu protein nitric oxide reductase activity.
10 nzymes endowed with bona fide oxygen- and/or nitric-oxide reductase activity, although their substrat
11 ns often invoke a hyponitrite species, as in nitric oxide reductase and NOx reduction catalysis, litt
12 s are highly conserved in the cNOR family of nitric oxide reductases and have previously been implica
13 se, one contained genes for both nitrate and nitric oxide reductase, and one had nitrate and nitrite
14 o nitrous oxide catalyzed by the nitrite and nitric oxide reductases, AniA and NorB.
15  copper-containing nitrite reductases, and a nitric oxide reductase are involved in the denitrificati
16                                    Bacterial nitric oxide reductases are integral membrane proteins t
17 oxidases (dioxygen reductases) or scavenging nitric oxide reductases, but the questions of which of t
18                                  Flavodiiron nitric oxide reductases (FNORs), found in many pathogeni
19 daptation to plants, and an intact anaerobic nitric oxide reductase gene, norV.
20 ite reductase) and norB (encoding a putative nitric oxide reductase) genes is repressed by the transc
21                          The gene encoding a nitric oxide reductase has been identified in Neisseria
22 pic expression of one of these genes, a P450 nitric oxide reductase homologue, was sufficient to incr
23 ncludes genes required for the expression of nitric oxide reductase in Rhodobacter sphaeroides 2.4.3
24 s D. vulgaris FprA functions as a scavenging nitric oxide reductase in vivo and that this activity pr
25 product shares significant identity with the nitric oxide reductases in Ralstonia eutropha and Synech
26                      In order to clarify the nitric oxide reductase mechanism, we undertook a multisp
27 Mb(-His) and Fe(II)-Fe(B)Mb(-His) exhibiting nitric oxide reductase (NOR) activities.
28               Alternative mechanisms for the nitric oxide reductase (NOR) activity consisting of eith
29 e and 4.2 K are presented for fully oxidized nitric oxide reductase (NOR) from Pseudomonas stutzeri.
30 structural and functional model of bacterial nitric oxide reductase (NOR) has been designed by introd
31                    A functional heme/nonheme nitric oxide reductase (NOR) model is presented.
32 reductase (Nir) to convert nitrite to NO and nitric oxide reductase (Nor) to convert NO to nitrous ox
33                                              Nitric oxide reductase (NOR) was present in clinical str
34 al and functional model of a metalloprotein, nitric oxide reductase (NOR), by introducing three histi
35 uctase (Nir) and reduced to nitrous oxide by nitric oxide reductase (Nor).
36 ss NO detoxification mechanisms, such as the nitric oxide reductase (NorB) of Neisseria meningitidis
37 or barrier to understanding the mechanism of nitric oxide reductases (NORs) is the lack of a selectiv
38 )N(beta) of N2O generated by purified fungal nitric oxide reductase (P450nor) from Histoplasma capsul
39                    The results show that the nitric oxide reductase reaction proceeds through success
40  transcriptional activator NnrR (nitrite and nitric oxide reductase regulator).
41 nd whether all FprAs function as oxidases or nitric oxide reductases remain to be clarified.
42 redicted to encode a nitrite reductase and a nitric oxide reductase, respectively.
43 , called FprA, likely function as scavenging nitric oxide reductases (S-NORs).
44 from strains such as 2.4.1, which likely use nitric oxide reductase to mitigate stress due to episodi
45 ncestor related to the NnrU (for nitrite and nitric oxide reductase U) gene required for bacterial de
46 th nitrate reductase, nitrite reductase, and nitric oxide reductase, which catalyze successive steps

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