Literature DB >> 8284943

Glutathione-dependent bioactivation of xenobiotics.

W Dekant1, S Vamvakas.   

Abstract

Glutathione conjugation has been identified as an important detoxication reaction. However, in recent years several glutathione-dependent bioactivation reactions have been identified. Current knowledge on the mechanisms and the possible biological importance of these reactions are discussed. 1. Dichloromethane is metabolized by glutathione conjugation to formaldehyde via S-(chloromethyl)glutathione. Both compounds are reactive intermediates and may be responsible for the dichloromethane-induced tumorigenesis in sensitive species. 2. Vicinal dihaloalkanes are transformed by glutathione S-transferase-catalyzed reactions to mutagenic and nephrotoxic S-(2-haloethyl)glutathione S-conjugates. Electrophilic episulphonium ions are the ultimate reactive intermediates formed. 3. Several polychlorinated alkenes are bioactivated in a complex, glutathione-dependent pathway. The first step is hepatic glutathione S-conjugate formation followed by cleavage to the corresponding cysteine S-conjugates, and, after translocation to the kidney, metabolism by renal cysteine conjugate beta-lyase. Beta-Lyase-dependent metabolism of halovinyl cysteine S-conjugates yields electrophilic thioketenes, whose covalent binding to cellular macromolecules is responsible for the observed toxicity of the parent compounds. 4. Finally, hepatic glutathione conjugate formation with hydroquinones and aminophenols yields conjugates that are directed to gamma-glutamyltransferase-rich tissues, such as the kidney, where they undergo alkylation or redox cycling reactions, or both, that cause organ-selective damage.

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Year:  1993        PMID: 8284943     DOI: 10.3109/00498259309059415

Source DB:  PubMed          Journal:  Xenobiotica        ISSN: 0049-8254            Impact factor:   1.908


  8 in total

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2.  The use of antioxidative stress enzymes, lipid peroxidation, and red blood cell abnormalities as biomarkers of stress in Periphthalmus papilio of the polluted coastal Lagos lagoon.

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Review 3.  Glutathione antioxidant system and methylmercury-induced neurotoxicity: An intriguing interplay.

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4.  CYP1A2*1F and GSTM1 alleles are associated with susceptibility to porphyria cutanea tarda.

Authors:  Jeffrey K Wickliffe; Sherif Z Abdel-Rahman; Chul Lee; Csilla Kormos-Hallberg; Gagan Sood; Catherine M Rondelli; James J Grady; Robert J Desnick; Karl E Anderson
Journal:  Mol Med       Date:  2010-10-15       Impact factor: 6.354

Review 5.  Nrf2 the rescue: effects of the antioxidative/electrophilic response on the liver.

Authors:  Curtis D Klaassen; Scott A Reisman
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6.  Pro-oxidant and antioxidant responses in the liver and kidney of wild Goodea gracilis and their relation with halomethanes bioactivation.

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Review 7.  Glutathione S-Transferases in Cancer.

Authors:  Rahul Raj Singh; Katie M Reindl
Journal:  Antioxidants (Basel)       Date:  2021-04-29

8.  Glutamine provides effective protection against deltamethrin-induced acute hepatotoxicity in rats but not against nephrotoxicity.

Authors:  Ercan Gündüz; Burak Veli Ülger; İbrahim İbiloğlu; Aysun Ekinci; Recep Dursun; Yılmaz Zengin; Mustafa İçer; Ömer Uslukaya; Cenap Ekinci; Cahfer Güloğlu
Journal:  Med Sci Monit       Date:  2015-04-19
  8 in total

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