Literature DB >> 30659883

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

Marcelo Farina1, Michael Aschner2.   

Abstract

Methylmercury (MeHg) is a toxic chemical compound naturally produced mainly in the aquatic environment through the methylation of inorganic mercury catalyzed by aquatic microorganisms. MeHg is biomagnified in the aquatic food chain and, consequently, piscivorous fish at the top of the food chain possess huge amounts of MeHg (at the ppm level). Some populations that have fish as main protein's source can be exposed to exceedingly high levels of MeHg and develop signs of toxicity. MeHg is toxic to several organs, but the central nervous system (CNS) represents a preferential target, especially during development (prenatal and early postnatal periods). Though the biochemical events involved in MeHg-(neuro)toxicity are not yet entirely comprehended, a vast literature indicates that its pro-oxidative properties explain, at least partially, several of its neurotoxic effects. As result of its electrophilicity, MeHg interacts with (and oxidize) nucleophilic groups, such as thiols and selenols, present in proteins or low-molecular weight molecules. It is noteworthy that such interactions modify the redox state of these groups and, therefore, lead to oxidative stress and impaired function of several molecules, culminating in neurotoxicity. Among these molecules, glutathione (GSH; a major thiol antioxidant) and thiol- or selenol-containing enzymes belonging to the GSH antioxidant system represent key molecular targets involved in MeHg-neurotoxicity. In this review, we firstly present a general overview concerning the neurotoxicity of MeHg. Then, we present fundamental aspects of the GSH-antioxidant system, as well as the effects of MeHg on this system.
Copyright © 2019 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Antioxidant system; Glutathione; Methylmercury; Neurotoxicity; Selenols; Thiols

Mesh:

Substances:

Year:  2019        PMID: 30659883      PMCID: PMC6635095          DOI: 10.1016/j.bbagen.2019.01.007

Source DB:  PubMed          Journal:  Biochim Biophys Acta Gen Subj        ISSN: 0304-4165            Impact factor:   3.770


  151 in total

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Journal:  Toxicol Lett       Date:  2010-11-30       Impact factor: 4.372

3.  Methylmercury increases glutamate release from brain synaptosomes and glutamate uptake by cortical slices from suckling rat pups: modulatory effect of ebselen.

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Journal:  Toxicol Sci       Date:  2003-04-15       Impact factor: 4.849

4.  Identification of methylmercury tolerance gene candidates in Drosophila.

Authors:  Cecon T Mahapatra; Jeffrey Bond; David M Rand; Matthew D Rand
Journal:  Toxicol Sci       Date:  2010-04-07       Impact factor: 4.849

5.  Methylmercury uptake in rat primary astrocyte cultures: the role of the neutral amino acid transport system.

Authors:  M Aschner; N B Eberle; S Goderie; H K Kimelberg
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6.  GSK-3beta acts upstream of Fyn kinase in regulation of nuclear export and degradation of NF-E2 related factor 2.

Authors:  Abhinav K Jain; Anil K Jaiswal
Journal:  J Biol Chem       Date:  2007-04-02       Impact factor: 5.157

7.  Diphenyl diselenide, a simple organoselenium compound, decreases methylmercury-induced cerebral, hepatic and renal oxidative stress and mercury deposition in adult mice.

Authors:  Andressa Sausen de Freitas; Vinícius Rafael Funck; Mariana dos Santos Rotta; Denise Bohrer; Vanessa Mörschbächer; Robson Luís Puntel; Cristina Wayne Nogueira; Marcelo Farina; Michael Aschner; João Batista Teixeira Rocha
Journal:  Brain Res Bull       Date:  2008-11-29       Impact factor: 4.077

8.  Delayed brainstem auditory evoked potential latencies in 14-year-old children exposed to methylmercury.

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Journal:  J Pediatr       Date:  2004-02       Impact factor: 4.406

9.  Effects of methylmercury exposure on glutathione metabolism, oxidative stress, and chromosomal damage in captive-reared common loon (Gavia immer) chicks.

Authors:  Kevin P Kenow; David J Hoffman; Randy K Hines; Michael W Meyer; John W Bickham; Cole W Matson; Katie R Stebbins; Paul Montagna; Abdulaziz Elfessi
Journal:  Environ Pollut       Date:  2008-07-26       Impact factor: 8.071

10.  Isothiocyanates reduce mercury accumulation via an Nrf2-dependent mechanism during exposure of mice to methylmercury.

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  18 in total

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Journal:  Coord Chem Rev       Date:  2020-05-07       Impact factor: 22.315

Review 2.  Non-redox cycling mechanisms of oxidative stress induced by PM metals.

Authors:  James M Samet; Hao Chen; Edward R Pennington; Philip A Bromberg
Journal:  Free Radic Biol Med       Date:  2019-12-23       Impact factor: 7.376

3.  Aberrant Gene Expression of Selenoproteins in Chicken Spleen Lymphocytes Induced by Mercuric Chloride.

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4.  β-Nicotinamide Mononucleotide (NMN) Administrated by Intraperitoneal Injection Mediates Protection Against UVB-Induced Skin Damage in Mice.

Authors:  Xianrong Zhou; Hang-Hang Du; Xingyao Long; Yanni Pan; Jian Hu; Jianjun Yu; Xin Zhao
Journal:  J Inflamm Res       Date:  2021-10-07

Review 5.  Ferroptosis as a mechanism of non-ferrous metal toxicity.

Authors:  Michael Aschner; Alexey A Tinkov; Anatoly V Skalny; Airton C Martins; Anton I Sinitskii; Marcelo Farina; Rongzhu Lu; Fernando Barbosa; Yordanka G Gluhcheva; Abel Santamaria
Journal:  Arch Toxicol       Date:  2022-06-21       Impact factor: 6.168

6.  The Thiol-Modifier Effects of Organoselenium Compounds and Their Cytoprotective Actions in Neuronal Cells.

Authors:  Letícia Selinger Galant; Jamal Rafique; Antônio Luiz Braga; Felipe Camargo Braga; Sumbal Saba; Rafael Radi; João Batista Teixeira da Rocha; Claudio Santi; Maria Monsalve; Marcelo Farina; Andreza Fabro de Bem
Journal:  Neurochem Res       Date:  2020-04-13       Impact factor: 3.996

7.  A Novel Diselenide-Probucol-Analogue Protects Against Methylmercury-Induced Toxicity in HT22 Cells by Upregulating Peroxide Detoxification Systems: a Comparison with Diphenyl Diselenide.

Authors:  Ruth L Quispe; Michael L Jaramillo; Ingrid A V Wolin; Rômulo F S Canto; Flavio A R Barbosa; Antônio L Braga; João B T Rocha; Michael Aschner; Rodrigo B Leal; Andreza F de Bem; Marcelo Farina
Journal:  Neurotox Res       Date:  2022-01-18       Impact factor: 3.911

8.  Effect of Zinc on the Oxidative Stress Biomarkers in the Brain of Nickel-Treated Mice.

Authors:  Jurgita Šulinskienė; Rasa Bernotienė; Dalė Baranauskienė; Rima Naginienė; Inga Stanevičienė; Artūras Kašauskas; Leonid Ivanov
Journal:  Oxid Med Cell Longev       Date:  2019-09-02       Impact factor: 6.543

9.  Methylmercury-induced cytotoxicity and oxidative biochemistry impairment in dental pulp stem cells: the first toxicological findings.

Authors:  Renata Duarte de Souza-Rodrigues; Bruna Puty; Laís Bonfim; Lygia Sega Nogueira; Priscila Cunha Nascimento; Leonardo Oliveira Bittencourt; Roberta Souza D'Almeida Couto; Carlos Augusto Galvão Barboza; Edivaldo Herculano Corrêa de Oliveira; Marcia Martins Marques; Rafael Rodrigues Lima
Journal:  PeerJ       Date:  2021-06-10       Impact factor: 2.984

Review 10.  Sex-specific neurotoxic effects of heavy metal pollutants: Epidemiological, experimental evidence and candidate mechanisms.

Authors:  Meethila Gade; Nicole Comfort; Diane B Re
Journal:  Environ Res       Date:  2021-07-02       Impact factor: 8.431

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