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The Journal of Biological Chemistry|February 5, 1987
Regulation of neutrophil NADPH oxidase activation in a cell-free system by guanine nucleotides and fluoride. Evidence for participation of a pertussis and cholera toxin-insensitive G proteinT G Gabig, D English, L P Akard, et al.Cellular Signalling|January 1, 1991
Expression of val-12 mutant ras p21 in an IL-3-dependent murine myeloid cell line is associated with loss of serum-dependence and increases in membrane PIP2-specific phospholipase C activityM T Rizzo, H S Boswell, D English, et al.The Journal of Biological Chemistry|November 25, 1994
Requiem: a novel zinc finger gene essential for apoptosis in myeloid cellsT G Gabig, P L Mantel, R Rosli, et al.Blood|February 1, 1995
Function of wild-type or mutant Rac2 and Rap1a GTPases in differentiated HL60 cell NADPH oxidase activationT G Gabig, C D Crean, P L Mantel, et al.The Journal of Biological Chemistry|November 10, 1984
Proton stoichiometry associated with human neutrophil respiratory-burst reactionsT G Gabig, B A Lefker, P J Ossanna, et al.Journal of Immunology (Baltimore, Md. : 1950)|August 1, 1990
A neutrophil GTP-binding protein that regulates cell free NADPH oxidase activation is located in the cytosolic fractionT G Gabig, E A Eklund, G B Potter, et al.Biochemical and Biophysical Research Communications|June 30, 1987
Cell-free activation of phagocyte NADPH-oxidase: tissue and differentiation-specific expression of cytosolic cofactor activityJ F Parkinson, L P Akard, M J Schell, et al.Blood|April 1, 1988
Restoration of adenylate cyclase responsiveness in murine myeloid leukemia permits inhibition of proliferation by hormone. Butyrate augments catalytic activity of adenylate cyclaseL Inhorn, J W Fleming, D Klingberg, et al.The Journal of Biological Chemistry|July 25, 1991
Resolution of a low molecular weight G protein in neutrophil cytosol required for NADPH oxidase activation and reconstitution by recombinant Krev-1 proteinE A Eklund, M Marshall, J B Gibbs, et al.Cancer Research|November 3, 2001
Expression of Clostridium perfringens enterotoxin receptors claudin-3 and claudin-4 in prostate cancer epitheliumH Long, C D Crean, W H Lee, et al.Pageof 4