◀ Back to CYBB
CYBA — CYBB
Pathways - manually collected, often from reviews:
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OpenBEL Selventa BEL large corpus:
None
→
Complex of CYBA-CYBB-NCF1-NCF2-NCF4-RAC1
(increases)
Rinckel et al., Biochem Biophys Res Commun 1999*
Evidence: Upon stimulation, a functional NADPH oxidase is assembled when the cytosolic proteins, Rac, p67phox, p47phox, and possibly p40phox, associate with the gp91phox and p22phox transmembrane proteins.
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OpenBEL Selventa BEL large corpus:
None
→
Complex of CYBA-CYBB-NCF1-NCF2-NCF4-RAC1
(increases, Activity)
Evidence: PKC is known to induce cellular reactive oxygen species (ROS) and PKC-dependent activation of the reduced form of nicotinamide adenine dinucleotide phosphate (NADPH oxidase has recently been shown to be responsible, in part, for increased oxidative stress in diabetes.
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KEGG Phagosome:
CYBA
→
CYBB/NOX1/NOX3
(protein-protein, binding/association)
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KEGG Phagosome:
CYBA
→
CYBB/NOX1/NOX3
(protein-protein, binding/association)
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KEGG Leukocyte transendothelial migration:
VCAM1
→
Complex of CYBA-CYBB-NCF1-NCF2-NCF4-NOX1-NOX3
(enzyme-enzyme, activation)
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KEGG Leukocyte transendothelial migration:
Complex of CYBA-CYBB-NCF1-NCF2-NCF4-NOX1-NOX3
→
MMP2/MMP9
(enzyme-enzyme, activation)
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KEGG Leukocyte transendothelial migration:
Complex of CYBA-CYBB-NCF1-NCF2-NCF4-NOX1-NOX3
→
MAPK11/MAPK12/MAPK13/MAPK14
(enzyme-enzyme, activation)
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KEGG Leukocyte transendothelial migration:
RAC1
→
Complex of CYBA-CYBB-NCF1-NCF2-NCF4-NOX1-NOX3
(protein-protein, activation)
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NCI Pathway Database RAC1 signaling pathway:
p47 Phox/p67 Phox/cytochrome b-245 complex (NCF1-NCF2-CYBB-CYBA)
→
p47 Phox/p67 Phox/cytochrome b-245/RAC1/GTP complex (NCF1-NCF2-RAC1-CYBB-CYBA)
(modification, collaborate)
Mizrahi et al., J Biol Chem 2005, Heyworth et al., Mol Biol Cell 1993
Evidence: physical interaction
-
NCI Pathway Database RAC1 signaling pathway:
p47 Phox/p67 Phox/cytochrome b-245 complex (NCF1-NCF2-CYBB-CYBA)
→
RAC1/GTP complex (RAC1)
(modification, collaborate)
Mizrahi et al., J Biol Chem 2005, Heyworth et al., Mol Biol Cell 1993
Evidence: physical interaction
-
NCI Pathway Database RAC1 signaling pathway:
p47 Phox/p67 Phox/cytochrome b-245/RAC1/GTP complex (NCF1-NCF2-RAC1-CYBB-CYBA)
→
RAC1/GTP complex (RAC1)
(modification, collaborate)
Mizrahi et al., J Biol Chem 2005, Heyworth et al., Mol Biol Cell 1993
Evidence: physical interaction
-
NCI Pathway Database RAC1 signaling pathway:
p47 Phox/p67 Phox/cytochrome b-245 complex (NCF1-NCF2-CYBB-CYBA)
→
cytochrome b-245 complex (CYBB-CYBA)
(modification, collaborate)
Roepstorff et al., J Biol Chem 2008
Evidence: physical interaction
-
NCI Pathway Database RAC1 signaling pathway:
p47 Phox/p67 Phox/cytochrome b-245 complex (NCF1-NCF2-CYBB-CYBA)
→
p47 Phox/p67 Phox complex (NCF1-NCF2)
(modification, collaborate)
Roepstorff et al., J Biol Chem 2008
Evidence: physical interaction
-
NCI Pathway Database RAC1 signaling pathway:
cytochrome b-245 complex (CYBB-CYBA)
→
p47 Phox/p67 Phox complex (NCF1-NCF2)
(modification, collaborate)
Roepstorff et al., J Biol Chem 2008
Evidence: physical interaction
-
Reactome Reaction:
CYBA
→
CYBB
(direct_complex)
-
WikiPathways Microglia Pathogen Phagocytosis Pathway:
CYBB
→
NCF1/NCF4/NCF2/RAC1/RAC2/RAC3/CYBB/CYBA
(mim-conversion)
Protein-Protein interactions - manually collected from original source literature:
Studies that report less than 10 interactions are marked with *
-
IRef Dip Interaction:
Complex of CYBB-CYBA-TNFRSF1A-RFK-NOX1-RAC1
(anti bait coimmunoprecipitation)
Yazdanpanah et al., Nature 2009
-
IRef Hprd Interaction:
Complex of 33 proteins
(in vivo)
Grizot et al., Biochemistry 2001*, Li et al., J Biol Chem 2002, Leto et al., Proc Natl Acad Sci U S A 1994, Sathyamoorthy et al., J Biol Chem 1997*
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IRef Hprd Interaction:
CYBB
—
CYBA
(in vivo)
Li et al., J Biol Chem 2002, Leto et al., Proc Natl Acad Sci U S A 1994
-
IRef Hprd Interaction:
CYBB
—
CYBA
(in vitro)
Li et al., J Biol Chem 2002, Leto et al., Proc Natl Acad Sci U S A 1994
-
IRef Ophid Interaction:
CYBB
—
CYBA
(aggregation, interologs mapping)
Brown et al., Bioinformatics 2005
Text-mined interactions from Literome
Dusi et al., Eur J Immunol 2001
:
Our results indicate that in monocytes the IFN-gamma- and TNF-alpha induced expression of gp91phox and
p22phox , but not p47phox,
requires the binding of PU.1 to
gp91phox promoter
Wandall et al., Aliment Pharmacol Ther 1991
(Translocation, Genetic) :
Superoxide anion production requires translocation of a
cytochrome b-245 and this translocation was
reduced by sulphasalazine ( P less than 0.01 ) but not by
5-ASA or sulphapyridine
Zhu et al., J Biol Chem 2006
:
The results demonstrate that
p22phox dependent maturation of gp91phox carbohydrate, cell surface expression of
gp91phox , and the enzymatic function of flavocytochrome b558 are closely correlated
Cassatella et al., J Clin Invest 1989
(Granulomatous Disease, Chronic...) :
Tumor necrosis factor and immune interferon synergistically
induce cytochrome b-245 heavy-chain gene expression and nicotinamide-adenine dinucleotide phosphate hydrogenase oxidase in human leukemic myeloid cells ... Tumor necrosis factor and
immune interferon synergistically
induce cytochrome b-245 heavy-chain gene expression and nicotinamide-adenine dinucleotide phosphate hydrogenase oxidase in human leukemic myeloid cells
Marshall et al., Am J Respir Cell Mol Biol 1996
(Anoxia) :
Together these observations demonstrate that the unique
cytochrome b-245 containing NADPH-oxidase is present in pulmonary artery smooth muscle and that an
NADPH-oxidase or NADH-oxidoreductase complex is
activated to release superoxide by hypoxic conditions