S-glutathionylation involves the reversible formation of a mix disulphide-bridge between specific cysteine and a molecule of glutathione, the major non-protein antioxidant compound in the cell. Mechanisms of protein S-glutathionylation are far to be completely understood and several reactions can promote it, either spontaneously or catalyzed. For the first time Glo II enzyme was studied as a new potential candidate to promote S-glutathionylation. To demonstrate its active involvement in protein glutathionylation were used actin, malate dehydrogenase and GAPDH purified proteins, which are known to be glutathionylated, for in vitro experiments..This work shows active involvement of cytosolic Glo II for in vitro protein S-glutathionylation. To...
Many proteins, including actin, are targets for S-glutathionylation, the reversible formation of mix...
Many proteins, including actin, are targets for S-glutathionylation, the reversible formation of mix...
Background: It is now recognized that protein cysteines exist not only as free thiols or intramolecu...
S-glutathionylation involves the reversible formation of a mix disulphide-bridge between specific cy...
S-glutathionylation involves the reversible formation of a mix disulphide-bridge between specific cy...
Abstract Glyoxalase II, the second of 2 enzymes in the glyoxalase system, is a hydroxyacylglutathio...
Abstract Glyoxalase II, the second of 2 enzymes in the glyoxalase system, is a hydroxyacylglutathio...
Abstract Glyoxalase II, the second of 2 enzymes in the glyoxalase system, is a hydroxyacylglutathio...
Abstract Glyoxalase II, the second of 2 enzymes in the glyoxalase system, is a hydroxyacylglutathio...
Glyoxalase II (GlxII) is an antioxidant glutathione-dependent enzyme, which catalyzes the hydrolysis...
Glyoxalase II (GlxII) is an antioxidant glutathione-dependent enzyme, which catalyzes the hydrolysis...
Glyoxalase II (GlxII) is an antioxidant glutathione-dependent enzyme, which catalyzes the hydrolysis...
Glyoxalase II (GlxII) is an antioxidant glutathione-dependent enzyme, which catalyzes the hydrolysis...
Many proteins, including actin, are targets for S-glutathionylation, the reversible formation of mix...
Many proteins, including actin, are targets for S-glutathionylation, the reversible formation of mix...
Many proteins, including actin, are targets for S-glutathionylation, the reversible formation of mix...
Many proteins, including actin, are targets for S-glutathionylation, the reversible formation of mix...
Background: It is now recognized that protein cysteines exist not only as free thiols or intramolecu...
S-glutathionylation involves the reversible formation of a mix disulphide-bridge between specific cy...
S-glutathionylation involves the reversible formation of a mix disulphide-bridge between specific cy...
Abstract Glyoxalase II, the second of 2 enzymes in the glyoxalase system, is a hydroxyacylglutathio...
Abstract Glyoxalase II, the second of 2 enzymes in the glyoxalase system, is a hydroxyacylglutathio...
Abstract Glyoxalase II, the second of 2 enzymes in the glyoxalase system, is a hydroxyacylglutathio...
Abstract Glyoxalase II, the second of 2 enzymes in the glyoxalase system, is a hydroxyacylglutathio...
Glyoxalase II (GlxII) is an antioxidant glutathione-dependent enzyme, which catalyzes the hydrolysis...
Glyoxalase II (GlxII) is an antioxidant glutathione-dependent enzyme, which catalyzes the hydrolysis...
Glyoxalase II (GlxII) is an antioxidant glutathione-dependent enzyme, which catalyzes the hydrolysis...
Glyoxalase II (GlxII) is an antioxidant glutathione-dependent enzyme, which catalyzes the hydrolysis...
Many proteins, including actin, are targets for S-glutathionylation, the reversible formation of mix...
Many proteins, including actin, are targets for S-glutathionylation, the reversible formation of mix...
Many proteins, including actin, are targets for S-glutathionylation, the reversible formation of mix...
Many proteins, including actin, are targets for S-glutathionylation, the reversible formation of mix...
Background: It is now recognized that protein cysteines exist not only as free thiols or intramolecu...