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1 codes gp91Phox; a component of the phagocyte respiratory burst oxidase.
2 vocytochrome b558 to form the multicomponent respiratory burst oxidase.
3 ctrons from NADPH to molecular oxygen in the respiratory burst oxidase.
4 protein kinase C-mediated activation of the respiratory burst oxidase.
5 The level of BRs was closely related to the respiratory burst oxidase 1 (RBOH1)-encoded NADPH oxides
6 l closure was dependent on the production of RESPIRATORY BURST OXIDASE 1 (RBOH1)-mediated hydrogen pe
7 using a different retroviral construct, and respiratory burst oxidase activity was fully reconstitut
11 6 extends into the neighboring gene encoding respiratory burst oxidase, and (2) a commonly used STA6
16 ut of the gp91-phox subunit of the phagocyte respiratory-burst oxidase cytochrome b-558, mimics chron
18 play distinct roles in the activation of the respiratory burst oxidase, each of them catalyzing the p
20 de proteins with similarity to components of respiratory burst oxidase have not previously been repor
21 be involved in the ROS burst from the plant respiratory burst oxidase homolog (Rboh) of the human ne
22 e, we report that the Arabidopsis rbohA (for respiratory burst oxidase homolog A) gene encodes a puta
23 f Ca(2+) wave propagation in the Arabidopsis respiratory burst oxidase homolog D (AtrbohD) knockout b
24 also induced increased levels of Arabidopsis respiratory burst oxidase homolog D (AtrbohD) mRNA, but
25 g MS, we identified the plant NADPH oxidase, respiratory burst oxidase homolog D (RBOHD), as an in vi
28 re associated with increased accumulation of respiratory burst oxidase homolog F (RBOHF)-dependent re
31 nine dinucleotide phosphate, reduced oxidase RESPIRATORY BURST OXIDASE HOMOLOG PROTEIN D (RBOHD) by s
32 n species generation (due to the function of Respiratory Burst Oxidase Homolog proteins D and F) are
33 silencing of a gene encoding NADPH oxidase (Respiratory burst oxidase homolog) in the gox mutants di
36 AtPeps is absent in the double mutant of the respiratory burst oxidase homologs D and F (rbohD rbohF)
37 hrough the transcriptional induction of four Respiratory Burst Oxidase Homologs TUNEL-positive nuclei
38 ADPH oxidase genes, MtRbohA and MtRbohC (for respiratory burst oxidase homologs), is increased in lat
39 d with reduced expression of the Arabidopsis respiratory burst oxidase homologue AtrbohD and the SA b
42 omologues, designated AtrbohA-F (A. thaliana Respiratory Burst Oxidase Homologues), which map to diff
44 the essential role of Rac in assembly of the respiratory burst oxidase, invasion through this nonopso
47 talytic subunit of the superoxide-generating respiratory burst oxidase, is regulated by subunits p47(
48 talytic subunit of the superoxide-generating respiratory burst oxidase, is stimulated by the regulato
49 actors, the membrane-bound components of the respiratory burst oxidase, membrane-bound adhesion molec
53 on in macrophages from mice deficient in the respiratory burst oxidase or inducible nitric oxide synt
55 The CYBB and NCF2 genes encode the phagocyte respiratory burst oxidase proteins, gp91PHOX and p67PHOX
56 est in connection with the regulation of the respiratory burst oxidase, Rap1A/Krev1 because it copuri
59 ease (X-CGD), an inherited deficiency of the respiratory burst oxidase, results from mutations in the
60 ox) are components of the phagocyte-specific respiratory burst oxidase that are encoded by the NCF2 a
61 acrophages lacking the 91-kDa subunit of the respiratory burst oxidase were deficient in their abilit
62 It has been hypothesized that plants contain respiratory burst oxidase which, upon activation, oxidiz
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