Literature DB >> 29618716

Glutathione has a more important role than metallothionein-I/II against inorganic mercury-induced acute renal toxicity.

Maki Tokumoto1, Jin-Yong Lee1, Akinori Shimada2, Chiharu Tohyama3,4,5, Masahiko Satoh1,4.   

Abstract

Inorganic mercury is a harmful heavy metal that causes severe kidney damage. Glutathione (GSH), a tripeptide comprising L-glutamic acid, glycine and L-cysteine, and metallothionein (MT), a cysteine-rich and metal-binding protein, are biologically important protective factors for renal toxicity by inorganic mercury. However, the relationship between GSH and MT for the prevention of renal toxicity by inorganic mercury is unknown. We examined the sensitivity of the mice depleted in GSH by treatment with L-Buthionine-SR-sulfoximine (L-BSO), and MT-I/II null mice genetically deleted for MT-I and MT-II, to inorganic mercury (HgCl2). Kidney damage was not induced in the wild-type mice treated with HgCl2 (30 µmol/kg). In the MT-I/II null mice, renal toxicity was induced by HgCl2 at a dose of 30 µmol/kg but not 1.0 µmol/kg. All GSH-depleted mice of both strains were dead following the injection of HgCl2 (30 µmol/kg). GSH-depleted wild-type mice treated with HgCl2 (1.0 µmol/kg) developed kidney damage similar to MT-I/II null mice treated with HgCl2 (30 µmol/kg). Moreover, renal toxicity induced by HgCl2 (1.0 µmol/kg) was more severe in GSH-depleted MT-I/II null mice compared with GSH-depleted wild-type mice. The present study found that GSH and MT-I/II play cooperatively an important role in the detoxification of severe kidney damage caused by inorganic mercury. In addition, GSH may act as a primary protective factor against inorganic mercury-induced acute renal toxicity, because GSH-depleted mice were more sensitive to inorganic mercury than MT-I/II null mice.

Entities:  

Keywords:  Glutathione; Inorganic mercury; Metallothionein; Nephrotoxicity

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Year:  2018        PMID: 29618716     DOI: 10.2131/jts.43.275

Source DB:  PubMed          Journal:  J Toxicol Sci        ISSN: 0388-1350            Impact factor:   2.196


  4 in total

1.  DNA Damage and Proteomic Profile Changes in Rat Salivary Glands After Chronic Exposure to Inorganic Mercury.

Authors:  Walessa Alana Bragança Aragão; Leonardo Oliveira Bittencourt; Leidiane Alencar de Oliveira Lima; Michel Platini Caldas de Souza; Lygia Sega Nogueira; Aline Dionizio; Marília Afonso Rabelo Buzalaf; Edivaldo Herculano Corrêa de Oliveira; Maria Elena Crespo-Lopez; Rafael Rodrigues Lima
Journal:  Biol Trace Elem Res       Date:  2022-01-10       Impact factor: 4.081

2.  Exposure of CuO Nanoparticles Contributes to Cellular Apoptosis, Redox Stress, and Alzheimer's Aβ Amyloidosis.

Authors:  Ying Shi; Alexander R Pilozzi; Xudong Huang
Journal:  Int J Environ Res Public Health       Date:  2020-02-05       Impact factor: 3.390

3.  Cinnabar protects serum-nutrient starvation induced apoptosis by improving intracellular oxidative stress and inhibiting the expression of CHOP and PERK.

Authors:  Hong-Hong Ma; Yan-Nan Ding; Ao Wang; Xia Li; Yang Wang; Fu-Guo Shi; Yuan-Fu Lu
Journal:  Biochem Biophys Rep       Date:  2021-06-29

4.  Effect of Metallothionein-III on Mercury-Induced Chemokine Gene Expression.

Authors:  Jin-Yong Lee; Maki Tokumoto; Gi-Wook Hwang; Min-Seok Kim; Tsutomu Takahashi; Akira Naganuma; Minoru Yoshida; Masahiko Satoh
Journal:  Toxics       Date:  2018-08-12
  4 in total

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