Glutathione-S-transferase is a target for covalent modification by a halothane reactive intermediate in the guinea pig liver
-
Add time:08/25/2019 Source:sciencedirect.com
The anesthetic halothane is bioactivated by the liver cytochrome P450 system to the reactive intermediate, trifluoroacetyl chloride, which can acylate liver protein. Cytosolic glutathione-S-transferase (GST) was identified as a major target for protein adduct formation in guinea pig liver slices exposed to halothane. To determine if GST is also a target in vivo, male Hartley guinea pigs were exposed to 1% halothane in 40% O2 for 4 h. At 10 h post exposure, livers were removed and microsomal and cytosolic fractions prepared. Past studies have shown these conditions resulted in maximal covalent binding of halothane intermediates to hepatic protein. Protein was isolated by ethanol precipitation and washed with trichloroacetic acid to remove unbound metabolites. Cytosolic GST was isolated by gel filtration and S-hexyl-glutathione affinity chromatography to electrophoretic purity. Protein adducts were quantified using a covalently bound fluorine assay. Covalent binding of a halothane intermediate to cytosolic and microsomal protein was determined as 2.0 ± 0.4 and 13.2 ± 2.3 nmol F/mg protein, respectively. Liver glutathione depletion by buthionine sulfoximine pretreatment produced an increase in covalent binding only to cytosolic proteins (3.3 ± 0.4 nmol F/mg protein). Adduct formation to cytosolic GST was determined to be 4.7 ± 1.6 nmol F/mg protein. Glutathione-S-transferase is a target for covalent modification in the liver following an inhalation exposure to halothane.
We also recommend Trading Suppliers and Manufacturers of S-(2-chloroacetyl)glutathione (cas 113668-38-5). Pls Click Website Link as below: cas 113668-38-5 suppliers
Prev:Affinity chromatography of hepatic glutathione S-transferases on ω-aminoalkyl sepharose derivatives of glutathione
Next:Highly selective detection of glutathione using a NIP/Cu2+ complex fluorescent probe) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Characterization of the chemical reactivity and nephrotoxicity of N-acetyl-S-(1,2-dichlorovinyl)-l-cysteine sulfoxide, a potential reactive metabolite of trichloroethylene08/29/2019
- Investigation of the active site of human placenta glutathione transferase π by means of a spin-labelled glutathione analogue08/28/2019
- Microsomal Glutathione Transferase 108/27/2019
- Highly selective detection of glutathione using a NIP/Cu2+ complex fluorescent probe08/26/2019
- Affinity chromatography of hepatic glutathione S-transferases on ω-aminoalkyl sepharose derivatives of glutathione08/24/2019
- Characterization of a new fluorogenic substrate for microsomal glutathione transferase 108/23/2019
- Reaction of glutathione with the electrophilic metabolites of 1,1-dichloroethylene08/22/2019
- Development of pyrethroid-like fluorescent substrates for glutathione S-transferase08/21/2019


