Protein disulfide isomerase is a central regulator of NADPH oxidase activity

2006 ◽  
Vol 45 (3) ◽  
pp. e71
Author(s):  
Mariano Janiszewski ◽  
Katrin Schröder ◽  
Rudi Busse ◽  
Francisco Laurindo ◽  
Ralf P. Brandes
Circulation ◽  
2007 ◽  
Vol 116 (suppl_16) ◽  
Author(s):  
Denise C Fernandes ◽  
Celio X Santos ◽  
Hanjoong Jo ◽  
Francisco R Laurindo

While anti-atherogenic effects of sustained laminar shear (LS) involve NO release from eNOS, increases in LS trigger transient superoxide production via NADPH oxidase. Recently, we showed that NADPH oxidase undergoes thiol-dependent regulation by the thioredoxin superfamily chaperone Protein Disulfide Isomerase (PDI). PDI is known to promote NO internalization via trans-nitrosation reactions. We hypothesized that PDI-dependent support of NADPH oxidase activity affects NO output during sustained LS. Cultured rabbit aortic endothelial cells (RAEC) submitted to LS (15 dynes/cm 2 ) in a cone-plate system for 18h exhibited (vs. static controls): Decreased (~50%) superoxide production (HPLC analysis of DHE oxidation); Decreased (~20%) NADPH-triggered hydrogen peroxide production in membrane fraction (Amplex Red assay); Decreased mRNA expression of Nox1 (67%) and Nox4 (45%) (real-time QPCR); Increased eNOS expression (~50%, western blot) and nitrite levels in culture medium (Δ = 7.1±2.5[SD] μM, NO Analyzer and Griess reaction); Decrease in total and membrane fraction PDI protein expression (~20%) without changes in membrane fraction/total ratio of PDI. RAEC were transfected with c-myc -tagged plasmid coding for wild-type (WT) PDI or PDI mutated in 4 thioredoxin-motif cysteine residues. Forced expression (2-fold) of mutated but not WT PDI led to increase in nitrite output after LS (18h) (Δmutated = 17.2±3.3 μM vs. ΔWT = 7.0±1.9 μM, n=3, p<0.02). Confocal microscopy indicated similar subcellular localization between WT and mutated PDI. PDI co-imunoprecipitated with p22phox NADPH oxidase subunit, but not with eNOS or caveolin-1, either in static condition or after LS. Fractionation studies in sucrose gradients showed that PDI is distributed throughout several fractions in static conditions, including caveolin-1-enriched fractions, but migrates to higher-density fractions, not containing caveolin-1, during sustained LS. These results suggest that PDI is involved in regulation of NO output during LS via its effects on NADPH oxidase activity.


2008 ◽  
Vol 10 (6) ◽  
pp. 1101-1114 ◽  
Author(s):  
Francisco R.M. Laurindo ◽  
Denise C. Fernandes ◽  
Angélica M. Amanso ◽  
Lucia R. Lopes ◽  
Célio X.C. Santos

2006 ◽  
Vol 20 (4) ◽  
Author(s):  
Ralf P. Brandes ◽  
Rudi Busse ◽  
Francisco R Laurindo ◽  
Mariano Janiszewski

2010 ◽  
Vol 49 ◽  
pp. S16
Author(s):  
Livia de Lucca Camargo ◽  
Aline Cristianne Depoli Androwiki ◽  
Graziela Scalianti Ceravolo ◽  
Alexandre Denadai-Souza ◽  
Marcelo Nicolas Muscara ◽  
...  

2009 ◽  
Vol 86 (4) ◽  
pp. 989-998 ◽  
Author(s):  
Célio X. C. Santos ◽  
Beatriz S. Stolf ◽  
Paulo V. A. Takemoto ◽  
Angélica M. Amanso ◽  
Lucia R. Lopes ◽  
...  

2019 ◽  
Vol 10 (2) ◽  
Author(s):  
Tiphany Coralie De Bessa ◽  
Alessandra Pagano ◽  
Ana Iochabel Soares Moretti ◽  
Percillia Victoria Santos Oliveira ◽  
Samir Andrade Mendonça ◽  
...  

2015 ◽  
Vol 3 ◽  
Author(s):  
Aline C. D. Androwiki ◽  
Lívia de Lucca Camargo ◽  
Simone Sartoretto ◽  
Gisele K. Couto ◽  
Izabela M. R. Ribeiro ◽  
...  

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