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Catalase as a sulfide-sulfur oxido-reductase: An ancient (and modern?) regulator of reactive sulfur species (RSS)
Catalase as a sulfide-sulfur oxido-reductase: An ancient (and modern?) regulator of reactive sulfur species (RSS)
- Source :
- Redox Biology, Redox Biology, Vol 12, Iss, Pp 325-339 (2017)
- Publication Year :
- 2017
-
Abstract
- Catalase is well-known as an antioxidant dismutating H2O2 to O2 and H2O. However, catalases evolved when metabolism was largely sulfur-based, long before O2 and reactive oxygen species (ROS) became abundant, suggesting catalase metabolizes reactive sulfide species (RSS). Here we examine catalase metabolism of H2Sn, the sulfur analog of H2O2, hydrogen sulfide (H2S) and other sulfur-bearing molecules using H2S-specific amperometric electrodes and fluorophores to measure polysulfides (H2Sn; SSP4) and ROS (dichlorofluorescein, DCF). Catalase eliminated H2Sn, but did not anaerobically generate H2S, the expected product of dismutation. Instead, catalase concentration- and oxygen-dependently metabolized H2S and in so doing acted as a sulfide oxidase with a P50 of 20 mmHg. H2O2 had little effect on catalase-mediated H2S metabolism but in the presence of the catalase inhibitor, sodium azide (Az), H2O2 rapidly and efficiently expedited H2S metabolism in both normoxia and hypoxia suggesting H2O2 is an effective electron acceptor in this reaction. Unexpectedly, catalase concentration-dependently generated H2S from dithiothreitol (DTT) in both normoxia and hypoxia, concomitantly oxidizing H2S in the presence of O2. H2S production from DTT was inhibited by carbon monoxide and augmented by NADPH suggesting that catalase heme-iron is the catalytic site and that NADPH provides reducing equivalents. Catalase also generated H2S from garlic oil, diallyltrisulfide, thioredoxin and sulfur dioxide, but not from sulfite, metabisulfite, carbonyl sulfide, cysteine, cystine, glutathione or oxidized glutathione. Oxidase activity was also present in catalase from Aspergillus niger. These results show that catalase can act as either a sulfide oxidase or sulfur reductase and they suggest that these activities likely played a prominent role in sulfur metabolism during evolution and may continue do so in modern cells as well. This also appears to be the first observation of catalase reductase activity independent of peroxide dismutation. Keywords: Hydrogen sulfide, Polysulfide, Garlic, Reactive oxygen species, Thioredoxin, Evolution, Aspergillus niger
- Subjects :
- 0301 basic medicine
Sulfide
Hydrogen sulfide
Clinical Biochemistry
Sulfur metabolism
chemistry.chemical_element
Sulfides
Biochemistry
Medicinal chemistry
Fungal Proteins
03 medical and health sciences
chemistry.chemical_compound
Invited Commentary
Anaerobiosis
Hydrogen Sulfide
lcsh:QH301-705.5
Carbonyl sulfide
chemistry.chemical_classification
lcsh:R5-920
Oxidase test
Reactive oxygen species
biology
Chemistry
Organic Chemistry
equipment and supplies
Catalase
Fluoresceins
Sulfur
Allyl Compounds
030104 developmental biology
lcsh:Biology (General)
biology.protein
Aspergillus niger
lcsh:Medicine (General)
Reactive Oxygen Species
Subjects
Details
- ISSN :
- 22132317
- Volume :
- 12
- Database :
- OpenAIRE
- Journal :
- Redox biology
- Accession number :
- edsair.doi.dedup.....50751269504f52b9b60dad92dac51c0d