scholarly journals Studies on the electron-transfer mechanism of the human neutrophil NADPH oxidase

1989 ◽  
Vol 262 (2) ◽  
pp. 575-579 ◽  
Author(s):  
J A Ellis ◽  
A R Cross ◽  
O T G Jones

A superoxide-generating NADPH oxidase was solubilized from phorbol 12-myristate 13-acetate-activated human neutrophils with a mixture of sodium deoxycholate (0.125%, w/v) and Lubrol-PX (0.125%, v/v). The solubilized preparation contained FAD (577 pmol/mg of protein) and cytochrome b-245 (479 pmol/mg of protein) and produced 11.61 mol of O2-./s per mol of cytochrome b (340 nmol of O2-./min per mg of protein). On addition of NADPH, the cytochrome b-245 was reduced by 7.9% and the FAD by 38% in the aerobic steady state; NADH addition caused little steady-state reduction of cytochrome b and FAD. In this preparation, and several others, the measured rate of O2-. production correlated with the turnover of cytochrome b calculated from the extent of cytochrome b-245 reduction under aerobic conditions. Addition of diphenyleneiodonium abolished the reduction of both the FAD and cytochrome b-245 components and inhibited O2-. production. The haem ligand imidazole inhibited O2-. generation and cytochrome b reduction while permitting FAD reduction. These results support the suggestion that the human neutrophil NADPH oxidase has the electron-transport sequence: NADPH-FAD-cytochrome b-245-O2.

1997 ◽  
Vol 328 (2) ◽  
pp. 559-564 ◽  
Author(s):  
Modesto CARBALLO ◽  
Rosario VILAPLANA ◽  
Gracia MÁRQUEZ ◽  
Manuel CONDE ◽  
J. Francisco BEDOYA ◽  
...  

To determine the nature of the mechanism by which certain derived ruthenium (Ru) complexes induce regression in tumour growth, we have investigated the possibility that this mechanism was associated with an increase of superoxide anion (O2-•) production by phagocytic cells, which are usually found in tumour nodes. Here we present evidence that a newly synthesized complex, Ru3+-propylene-1,2-diaminotetra-acetic acid (Ru-PDTA), derived from Ru and the sequestering ligand (PDTA), specifically stimulates O2-• production. This increase was associated with the translocation of cytosolic factors p47phox and p67phox of NADPH oxidase to the plasma membrane. The Ru-PDTA-complex-dependent O2-• production was abrogated by staurosporine, partially inhibited by diphenylene iodonium, and it was insensitive to pertussis toxin or dibutyryl cyclic AMP pretreatment. An increase of cytosolic Ca2+ levels were also detected in neutrophils treated with the Ru-PDTA complex. Also, Ru-PDTA complex induced the phosphorylation of tyrosine residues of several proteins as assessed by Western blotting. Present data are consistent with the possibility that Ru-PDTA-dependent antitumour effects are due in part to the complex's ability to stimulate the release of toxic oxygen metabolites from phagocytic cells infiltrating tumour masses.


1992 ◽  
Vol 70 (5) ◽  
pp. 301-308 ◽  
Author(s):  
M. Crinson ◽  
P. Nicholls

Cytochrome c oxidase oxidizes several hydrogen donors, including TMPD (N,N,N′,N′-tetramethyl-p-phenylenediamine) and DMPT (2-amino-6,7-dimethyl-5,6,7,8-tetrahydropterine), in the absence of the physiological substrate cytochrome c. Maximal enzyme turnovers with TMPD and DMPT alone are rather less than with cytochrome c, but much greater than previously reported if extrapolated to high reductant levels and (or) to 100% reduction of cytochrome a in the steady state. The presence of cytochrome c is, therefore, not necessary for substantial intramolecular electron transfer to occur in the oxidase. A direct bimolecular reduction of cytochrome a by TMPD is sufficient to account for the turnover of the enzyme. CuA may not be an essential component of the TMPD oxidase pathway. DMPT oxidation seems to occur more rapidly than the DMPT – cytochrome a reduction rate and may therefore imply mediation of CuA. Both "resting" and "pulsed" oxidases contain rapid-turnover and slow-turnover species, as determined by aerobic steady-state reduction of cytochrome a by TMPD. Only the "rapid" fraction (≈70% of the total with resting and ≈85% of the total with pulsed) is involved in turnover. We conclude that electron transfer to the a3CuB binuclear centre can occur either from cytochrome a or CuA, depending upon the redox state of the binuclear centre. Under steady-state conditions, cytochrome a and CuA may not always be in rapid equilibrium. Rapid enzyme turnover by either natural or artificial substrates may require reduction of both and two pathways of electron transfer to the a3CuB centre.Key words: cytochrome c oxidase, cytochrome a, respiration, cyanide, stopped flow.


Blood ◽  
1982 ◽  
Vol 60 (2) ◽  
pp. 333-339 ◽  
Author(s):  
AI Tauber ◽  
DB Brettler ◽  
EA Kennington ◽  
PM Blumberg

Abstract Phorbol esters are potent stimulants of the respiratory burst of the human neutrophil as assessed by superoxide (O2-) generation in whole cells and by NADPH-oxidase activity in a broken-cell 27,000-g particulate fraction. Phorbol 12-myristate, 13-acetate (PMA) and phorbol 12,13-dibutyrate (PDBu) stimulate production of O2- by human neutrophils with ED50 concentrations of 3.9 +/- 2.1 and 41.7 +/- 7.1 nM, respectively. The relation of biologic activity to receptor occupancy was assessed with binding studies of PMA and PDBu. Phorbol ester binding revealed a single high affinity phorbol ester receptor present at 7.6 x 10(5) sites/cell. The binding affinities for PMA and PDBu, 4.9 nM and 38.4 nM, respectively, agreed quantitatively with that of biologic potencies. Because of the high concentration of phorbol ester receptors (up to 125 nM) and the large amount of nonspecific binding at high cell density, apparent discrepancies between ED50′s for NADPH-oxidase and whole cell O2- generation were noted. With the use of low cell concentrations, quantitative agreement between intact cell production of O2-, NADPH-oxidase activity, and receptor binding was found. These results further support the identity of the NADPH-oxidase as the enzymatic source of respiratory burst O2- production in human neutrophils.


Blood ◽  
2009 ◽  
Vol 114 (22) ◽  
pp. 1354-1354 ◽  
Author(s):  
Michael Ellison ◽  
Gail Thurman ◽  
Daniel R. Ambruso

Abstract Abstract 1354 Poster Board I-377 Introduction We have identified a 29 kDa protein from human neutrophils which binds to the NADPH oxidase component p67phox and enhances superoxide anion (O2−) production in a cell-free, reconstituted, NADPH oxidase system. The protein was identified as peroxiredoxin VI by sequence and the recombinant molecule was found to have both peroxiredoxin activity and calcium-independent PLA2 activity that is optimum at low pH (aiPLA2). Although p29 Prdx VI is found in many tissues, its role in myeloid cells is not well established. To explore other roles of p29, in addition to its effect on the respiratory burst, a PLB-985 cell line with shRNA mediated knockdown of p29 Prdx VI was established. Chemotaxis, as well as ingestion and killing S. aureus were determined in knockdown and control cells. Methods PLB-985 cells were transfected with a plasmid encoding a p29 Prdx VI targeting shRNA or a negative control plasmid and stable transfectants were selected in puromycin containing media. Knockdown of p29 Prdx VI was confirmed by Western blot with no changes in actin or other oxidase components. After maturation of the knockdown and control cells by DMSO for 4 days, each was combined with serum opsonized Staph. aureus in a 2 to1 human cell to bacterial cell ratio, bacterial cells remaining at various times were measured by plating aliquots of the cell mixtures and counting bacterial colonies which grew overnight. To evaluate ingestion, aliquots of the cell mixtures were transferred to slides by cytospin, stained, and examined under a light microscope to determine what proportion of PLB-985 cells had internalized bacteria. To evaluate chemotaxis, distances of migration toward chemo-attractant (opsonized zymosan) in a Boyden chamber were measured for differentiated p29 Prdx VI knockdown and control cells. Results Using stable expression of shRNA p29 protein was reduced to 31+/-18% (SD) of that in non-knockdown control cells. In two separate assays of bactericidal activity, cells without knockdown of p29 Prdx VI had 17 and 13% of initial bacteria surviving at 30 min; cells with p29 Prdx VI knockdown had 30 and 56% of bacteria surviving. This defect in bactericidal activity since ingestion was no different between the two types of cells at 0, 5, 10, and 15 min after addition of the bacteria. In response to zymosan activated serum, stimulated directed migration (distance of leading front in response to zymosan activated serum minus distance of leading front in response to buffer) was greater in cells without knockdown (23.9 ± 3.0 microns, mean ± SEM, n = 4 separate experiments) than movement by cells with knockdown of p29 Prdx VI (18.3 ± 5.3 microns). The difference was significant, p<0.05 by paired t test. Conclusion Optimal O2− production during the respiratory burst in intact myeloid cells is dependent on p29. Deficient bactericidal activity was demonstrated at 30 min; this decrease could not be associated with a difference in ingestion. In addition, directed cell migration was also decreased in cells with decreased amounts of p29 Prdx VI. These results indicate that in addition to its effect on the respiratory burst, p29 Prdx supports multiple functions in neutrophils. Disclosures No relevant conflicts of interest to declare.


FEBS Letters ◽  
1986 ◽  
Vol 199 (2) ◽  
pp. 159-163 ◽  
Author(s):  
Paolo Bellavite ◽  
Marco A. Cassatella ◽  
Emanuele Papini ◽  
Pál Megyeri ◽  
Filippo Rossi

1990 ◽  
Vol 68 (9) ◽  
pp. 1135-1141 ◽  
Author(s):  
Peter Nicholls

The steady-state spectroscopic behaviour and the turnover of cytochrome c oxidase incorporated into proteoliposomes have been investigated as functions of membrane potential and pH gradient. The respiration rate is almost linearly dependent on [cytochrome c2+] at high flux, but while the cytochrome a redox state is always dependent on the [cytochrome c2+] steady state, it reaches a maximum reduction level less than 100% in each case. The maximal aerobic steady-state reduction level of cytochrome a is highest in the presence of valinomycin and lowest in the presence of nigericin. The proportion of [cytochrome c2+] required to achieve 50% of maximal reduction of cytochrome a varies with the added ionophores; the apparent redox potential of cytochrome a is most positive in the fully decontrolled system (plus valinomycin and nigericin). At low levels of cytochrome a reduction, the rate of respiration is no longer a linear function of [cytochrome c2+], but is dependent upon the redox state of both cytochromes a and c. That is, proteoliposomal oxidase does not follow Smith–Conrad kinetics at low cytochrome c reduction levels, especially in the controlled states. The control of cytochrome oxidase turnover by ΔpH and by ΔΨ can be explained either by an allosteric model or by a model with reversed electron transfer between the binuclear centre and cytochrome a. Other evidence suggests that the reversed electron transfer model may be the correct one.Key words: proteoliposomes, cytochrome c, cytochrome oxidase, membrane potential, pH gradient, cytochrome a, electron transfer.


1988 ◽  
Vol 251 (3) ◽  
pp. 887-891 ◽  
Author(s):  
J A Ellis ◽  
S J Mayer ◽  
O T Jones

NADPH-dependent superoxide production by intact human neutrophils is inhibited by DPI (diphenyleneiodonium), when stimulated by either FMLP (N-formylmethionyl-leucyl-phenylalanine) or PMA (phorbol 12-myristate 13-acetate). Addition of 10 microM-DPI abolished the reduction of both the FAD and the cytochrome b components of the NADPH oxidase. DPI inhibition of the oxidase was associated with defective aerobic killing of staphylococci by human neutrophils. Anaerobic killing, phagocytosis, chemotaxis and motility were relatively unaffected by 10 microM-DPI. Degranulation of the azurophil and specific granules, induced by the soluble stimuli FMLP or PMA, and by particulate stimuli was decreased by the presence of DPI. The above effects of DPI on human neutrophils are similar to those found in chronic granulomatous disease.


Blood ◽  
1982 ◽  
Vol 60 (2) ◽  
pp. 333-339
Author(s):  
AI Tauber ◽  
DB Brettler ◽  
EA Kennington ◽  
PM Blumberg

Phorbol esters are potent stimulants of the respiratory burst of the human neutrophil as assessed by superoxide (O2-) generation in whole cells and by NADPH-oxidase activity in a broken-cell 27,000-g particulate fraction. Phorbol 12-myristate, 13-acetate (PMA) and phorbol 12,13-dibutyrate (PDBu) stimulate production of O2- by human neutrophils with ED50 concentrations of 3.9 +/- 2.1 and 41.7 +/- 7.1 nM, respectively. The relation of biologic activity to receptor occupancy was assessed with binding studies of PMA and PDBu. Phorbol ester binding revealed a single high affinity phorbol ester receptor present at 7.6 x 10(5) sites/cell. The binding affinities for PMA and PDBu, 4.9 nM and 38.4 nM, respectively, agreed quantitatively with that of biologic potencies. Because of the high concentration of phorbol ester receptors (up to 125 nM) and the large amount of nonspecific binding at high cell density, apparent discrepancies between ED50′s for NADPH-oxidase and whole cell O2- generation were noted. With the use of low cell concentrations, quantitative agreement between intact cell production of O2-, NADPH-oxidase activity, and receptor binding was found. These results further support the identity of the NADPH-oxidase as the enzymatic source of respiratory burst O2- production in human neutrophils.


Blood ◽  
2003 ◽  
Vol 102 (2) ◽  
pp. 662-671 ◽  
Author(s):  
Rajaa El Bekay ◽  
Moisés Álvarez ◽  
Javier Monteseirín ◽  
Gonzalo Álba ◽  
Pedro Chacón ◽  
...  

Abstract Neutrophils are mobilized to the vascular wall during vessel inflammation. Published data are conflicting on phagocytic nicotinamide-adenine dinucleotide phosphate (NADPH) oxidase activation during the hypertensive state, and the capacity of angiotensin II (Ang II) to modulate the intracellular redox status has not been analyzed in neutrophils. We here describe that Ang II highly stimulates endogenous and extracellular O2- production in these cells, consistent with the translocation to the cell membrane of the cytosolic components of NADPH oxidase, p47phox, and p67phox. The Ang II–dependent O2- production was suppressed by specific inhibitors of AT1 receptors, of the p38MAPK and ERK1/2 pathways, and of flavin oxidases. Furthermore, Ang II induced a robust phosphorylation of p38MAPK, ERK1/2, and JNK1/2 (particularly JNK2), which was hindered by inhibitors of NADPH oxidase, tyrosine kinases, and ROS scavengers. Ang II increased cytosolic Ca2+ levels—released mainly from calcium stores—enhanced the synthesis de novo and activity of calcineurin, and stimulated the DNA-binding activity of the transcription factor NF-κB in cultured human neutrophils. Present data demonstrate for the first time a stimulatory role of Ang II in the activation of phagocytic cells, underscore the relevant role of ROS as mediators in this process, and uncover a variety of signaling pathways by which Ang II operates in human neutrophils.


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