Glutathione disulfide
Chemical compound
From Wikipedia, the free encyclopedia
Glutathione disulfide (GSSG) is a disulfide derived from two glutathione molecules.[1]
| Names | |
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| Systematic IUPAC name
(2S,2′S)-5,5′-(Disulfanediylbis{(2R)-3-[(carboxymethyl)amino]-3-oxopropane-1,2-diyl})bis(2-amino-5-oxopentanoic acid) | |
| Identifiers | |
3D model (JSmol) |
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| Abbreviations | GSSG |
| ChEMBL | |
| ChemSpider | |
| ECHA InfoCard | 100.043.777 |
| KEGG | |
PubChem CID |
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| UNII | |
CompTox Dashboard (EPA) |
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| Properties | |
| C20H32N6O12S2 | |
| Molar mass | 612.63 g·mol−1 |
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
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In living cells, glutathione disulfide is reduced into two molecules of glutathione with reducing equivalents from the coenzyme NADPH. This reaction is catalyzed by the enzyme glutathione reductase.[2]
Antioxidant enzymes, such as glutathione peroxidases and peroxiredoxins, generate glutathione disulfide during the reduction of peroxides such as hydrogen peroxide (H2O2) and organic hydroperoxides (ROOH):[3]
- 2 GSH + ROOH → GSSG + ROH + H2O
Other enzymes, such as glutaredoxins, generate glutathione disulfide through thiol-disulfide exchange with protein disulfide bonds or other low molecular mass compounds, such as coenzyme A disulfide or dehydroascorbic acid.[4]
- 2 GSH + R-S-S-R → GSSG + 2 RSH
The GSH:GSSG ratio is therefore an important bioindicator of cellular health, with a higher ratio signifying less oxidative stress in the organism. A lower ratio may even be indicative of neurodegenerative diseases, such as Parkinson's disease (PD) and Alzheimer's disease.[5]
Neuromodulator
GSSG, along with glutathione and S-nitrosoglutathione (GSNO), have been found to bind to the glutamate recognition site of the NMDA and AMPA receptors (via their γ-glutamyl moieties), and may be endogenous neuromodulators.[6][7] At millimolar concentrations, they may also modulate the redox state of the NMDA receptor complex.[7]
