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Items: 1 to 20 of 409

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Cytochrome b558: the flavin-binding component of the phagocyte NADPH oxidase.

Rotrosen D, Yeung CL, Leto TL, Malech HL, Kwong CH.

Science. 1992 Jun 5;256(5062):1459-62.

PMID:
1318579
5.

The superoxide-generating NADPH oxidase: structural aspects and activation mechanism.

Vignais PV.

Cell Mol Life Sci. 2002 Sep;59(9):1428-59. Review.

PMID:
12440767
6.

Leu505 of Nox2 is crucial for optimal p67phox-dependent activation of the flavocytochrome b558 during phagocytic NADPH oxidase assembly.

Li XJ, Fieschi F, Paclet MH, Grunwald D, Campion Y, Gaudin P, Morel F, Stasia MJ.

J Leukoc Biol. 2007 Jan;81(1):238-49. Epub 2006 Oct 23.

PMID:
17060362
9.

156Pro-->Gln substitution in the light chain of cytochrome b558 of the human NADPH oxidase (p22-phox) leads to defective translocation of the cytosolic proteins p47-phox and p67-phox.

Leusen JH, Bolscher BG, Hilarius PM, Weening RS, Kaulfersch W, Seger RA, Roos D, Verhoeven AJ.

J Exp Med. 1994 Dec 1;180(6):2329-34.

11.

Regulation of the human neutrophil NADPH oxidase by rho-related G-proteins.

Kwong CH, Malech HL, Rotrosen D, Leto TL.

Biochemistry. 1993 Jun 1;32(21):5711-7.

PMID:
8504089
12.

Inhibition of Rap1A binding to cytochrome b558 of NADPH oxidase by phosphorylation of Rap1A.

Bokoch GM, Quilliam LA, Bohl BP, Jesaitis AJ, Quinn MT.

Science. 1991 Dec 20;254(5039):1794-6.

PMID:
1763330
14.

Methionine-393 is an axial ligand of the heme b558 component of the cytochrome bd ubiquinol oxidase from Escherichia coli.

Kaysser TM, Ghaim JB, Georgiou C, Gennis RB.

Biochemistry. 1995 Oct 17;34(41):13491-501.

PMID:
7577938
16.

NADPH dehydrogenase activity of p67PHOX, a cytosolic subunit of the leukocyte NADPH oxidase.

Dang PM, Babior BM, Smith RM.

Biochemistry. 1999 May 4;38(18):5746-53.

PMID:
10231525
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Evidence for a functional cytoplasmic domain of phagocyte oxidase cytochrome b558.

Rotrosen D, Kleinberg ME, Nunoi H, Leto T, Gallin JI, Malech HL.

J Biol Chem. 1990 May 25;265(15):8745-50.

20.

Binding of FAD to cytochrome b558 is facilitated during activation of the phagocyte NADPH oxidase, leading to superoxide production.

Hashida S, Yuzawa S, Suzuki NN, Fujioka Y, Takikawa T, Sumimoto H, Inagaki F, Fujii H.

J Biol Chem. 2004 Jun 18;279(25):26378-86. Epub 2004 Apr 21.

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