Possible Sources of Reactive Oxygen during the Oxidative Burst in Plants

Author(s):  
Terrence M. Murphy ◽  
Han Asard ◽  
Andrew R. Cross
2015 ◽  
Vol 82 (5) ◽  
pp. 1577-1585 ◽  
Author(s):  
Jia-Yu Zhou ◽  
Jie Yuan ◽  
Xia Li ◽  
Yi-Fan Ning ◽  
Chuan-Chao Dai

ABSTRACTOxygenous terpenoids are active components of many medicinal plants. However, current studies that have focused on enzymatic oxidation reactions cannot comprehensively clarify the mechanisms of oxygenous terpenoid synthesis and diversity. This study shows that an endophytic bacterium can trigger the generation of reactive oxygen species (ROS) that directly increase oxygenous sesquiterpenoid content and diversity inAtractylodes lancea.A. lanceais a famous but endangered Chinese medicinal plant that contains abundant oxygenous sesquiterpenoids. Geo-authenticA. lanceaproduces a wider range and a greater abundance of oxygenous sesquiterpenoids than the cultivated herb. Our previous studies have shown the mechanisms behind endophytic promotion of the production of sesquiterpenoid hydrocarbon scaffolds; however, how endophytes promote the formation of oxygenous sesquiterpenoids and their diversity is unclear. After colonization byPseudomonas fluorescensALEB7B, oxidative burst and oxygenous sesquiterpenoid accumulation inA. lanceaoccur synchronously. Treatment with exogenous hydrogen peroxide (H2O2) or singlet oxygen induces oxidative burst and promotes oxygenous sesquiterpenoid accumulationin planta. Conversely, pretreatment of plantlets with the ROS scavenger ascorbic acid significantly inhibits the oxidative burst and oxygenous sesquiterpenoid accumulation induced byP. fluorescensALEB7B. Furtherin vitrooxidation experiments show that several oxygenous sesquiterpenoids can be obtained from direct oxidation caused by H2O2or singlet oxygen. In summary, this study demonstrates that endophytic bacterium-triggered ROS can directly oxidize oxygen-free sesquiterpenoids and increase the oxygenous sesquiterpenoid content and diversity inA. lancea, providing a novel explanation of the mechanisms of oxygenous terpenoid synthesisin plantaand an essential complementarity to enzymatic oxidation reactions.


2016 ◽  
Vol 96 ◽  
pp. S61
Author(s):  
Jaime López-Cruz ◽  
Óscar Crespo-Salvador ◽  
Emma Fernández-Crespo ◽  
Pilar García-Agustín ◽  
Carmen González-Bosch

2004 ◽  
Vol 72 (4) ◽  
pp. 2123-2130 ◽  
Author(s):  
Kieran A. Ryan ◽  
Michael F. Smith ◽  
Michael K. Sanders ◽  
Peter B. Ernst

ABSTRACT Toll-like receptor 4 (TLR4) has been identified as a transmembrane protein involved in the host innate immune response to gram-negative bacterial lipopolysaccharide (LPS). Upon activation by LPS recognition, the TIR domain of TLR4 signals through MyD88 to activate the nuclear factor κB (NF-κB) pathway, a critical regulator of many proinflammatory genes, including interleukin-8 (IL-8). Emerging evidence suggests that reactive oxygen species (ROS) can contribute to diverse signaling pathways, including the LPS-induced cascade. In the present study we investigated the role of ROS in TLR-mediated signaling. Purified Escherichia coli LPS, a highly specific TLR4 agonist, elicited an oxidative burst in the monocyte-like cell line THP-1 in a time- and dose-dependent manner. This oxidative burst was shown to be dependent on the presence of TLR4 through transfection studies in HEK cells, which do not normally express this protein, and with bone marrow-derived macrophages from C3H/HeJ mice, which express a mutated TLR4 protein. LPS-stimulated IL-8 expression could be blocked by the antioxidants N-acetyl-l-cysteine and dimethyl sulfoxide at both the protein and mRNA levels. These antioxidants also blocked LPS-induced IL-8 promoter transactivation as well as the nuclear translocation of NF-κB. These data provide evidence that ROS regulate immune signaling through TLR4 via their effects on NF-κB activation.


2000 ◽  
Vol 41 (11) ◽  
pp. 1259-1266 ◽  
Author(s):  
Tomonori Kawano ◽  
Reinhard Pinontoan ◽  
Nobuyuki Uozumi ◽  
Yasujiro Morimitsu ◽  
Chikahiro Miyake ◽  
...  

2015 ◽  
pp. S445-S452 ◽  
Author(s):  
R. NOSÁĽ ◽  
K. DRÁBIKOVÁ ◽  
V. JANČINOVÁ ◽  
T. MAČIČKOVÁ ◽  
J. PEČIVOVÁ ◽  
...  

The effect of three therapeutically used drugs and five polyphenolic compounds on the mechanism of oxidative burst was compared in whole blood and isolated neutrophils at cellular and molecular level. In 10 μM concentration, the compounds investigated decreased the oxidative burst of whole blood in the rank order of potency: N-feruloylserotonin (N-f-5HT) > curcumin (CUR) > quercetin (QUER) > arbutin (ARB) > resveratrol (RES) > dithiaden (DIT) > carvedilol (CARV) > brompheniramine (BPA). The ratio between the percentage inhibition of extracellular versus intracellular chemiluminescence (CL) followed the rank order QUER > N-f-5HT > RES > CUR > DIT and is indicative of the positive effect of the compounds tested against oxidative burst of neutrophils, demonstrating suppression of reactive oxygen species extracellularly with minimal alteration of intracellular reactive oxygen species (ROS). Activation of protein kinase C was significantly decreased by DIT, CUR, QUER and N-f-5HT. CARV, DIT, QUER and ARB reduced activated neutrophil myeloperoxidase release more significantly compared with the effect on superoxide anion generation. All compounds tested increased the activity of caspase-3 in cell-free system. It is suggested that other regulatory mechanisms than protein kinase C might participate in the inhibition of neutrophil activation with the compounds tested. Different mechanisms are concerned in controlling the assembly of NADPH oxidase and the regulatory role of calcium ions is suggested. Compounds decreasing the amount of extracellular ROS generation, yet affecting but minimally intracellular ROS generation, are promising for further investigation in vivo.


2017 ◽  
Vol 10 (2) ◽  
pp. 56-60 ◽  
Author(s):  
Rado Nosáľ ◽  
Katarína Drábiková ◽  
Viera Jančinová ◽  
Tatiana Mačičková ◽  
Jana Pečivová ◽  
...  

AbstractIn this study we investigated the effect of five therapeutically used drugs and four natural polyphenolic compounds on the mechanism of oxidative burst of human neutrophils concerning their participation in the generation of reactive oxygen species (ROS). The compounds investigated decreased the oxidative burst of whole blood in the rank order of potency: N-feruloylserotonin > quercetin > curcumin > arbutin > dithiaden > carvedilol. The generation of intracellular reactive oxygen species in isolated neutrophils decreased in the same rank order, while carvedilol was ineffective. Scavenging of extracellular oxygen radicals followed the rank order of potency: N-feruloylserotonin > curcumin > quercetin > dithiaden. Arbutin and carvedilol had no effect. All compounds tested increased the activity of caspase-3 in cell-free system indicating a positive effect on apoptosis of neutrophils. Activation of protein kinase C was significantly decreased by dithiaden, curcumin, quercetin and N-feruloylserotonin. Carvedilol, dithiaden, quercetin and arbutin reduced activated neutrophil myeloperoxidase release more significantly compared with their less pronounced effect on superoxide generation The presented results are indicative of pharmacological intervention with neutrophils in pathological processes. Of particular interest was the effect of natural compounds. Intracellular inhibition of oxidative burst in isolated neutrophils by the drugs tested and natural antioxidants has to be further analysed since ROS play an important role in immunological responses of neutrophils.


2014 ◽  
Vol 38 (11) ◽  
pp. 5566-5572 ◽  
Author(s):  
Muhammad Raza Shah ◽  
Anwar Shamim ◽  
Lauren S. White ◽  
Massimo F. Bertino ◽  
M. Ahmed Mesaik ◽  
...  

Au particles capped with scopoletin, isolated from Artemisia roxburghiana using column chromatography, show no change in NO inhibitory activity and inhibition of the oxidative burst of reactive oxygen species (ROS) in whole blood phagocytes and isolated neutrophils is enhanced by three times when compared to pure scopoletin.


2019 ◽  
Vol 20 (4) ◽  
pp. 485-499 ◽  
Author(s):  
Evelin Kámán‐Tóth ◽  
Tamás Dankó ◽  
Gábor Gullner ◽  
Zoltán Bozsó ◽  
László Palkovics ◽  
...  

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