Literature DB >> 17018868

Metallothioneins: mercury species-specific induction and their potential role in attenuating neurotoxicity.

Michael Aschner1, Tore Syversen, Diogo O Souza, Joao B T Rocha.   

Abstract

Metallothionein (MT) proteins are widespread in bacteria, fungi, plants, and eukaryotic species. They are of low molecular weight (6-7 kDa) and of the 60+ amino acid residues, 20 are cysteines. Functions attributed to MTs include the sequestration and dispersal of metal ions, primarily in zinc and copper homeostasis; regulation of the biosynthesis and activity of zinc metalloproteins, most notably zinc-dependent transcription factors; and cellular cytoprotection from reactive oxygen species, ionizing radiation, electrophilic anticancer drugs and mutagens, and metals. Observations on the abundance of MTs within the central nervous system (CNS) and the identification of a brain-specific isoform, MT-III, suggest that it might have important neurophysiological and neuromodulatory functions. Reinforced by the potential involvement of MT-III in a number of neurodegenerative disorders, the role of MTs in the CNS has become an intense focus of scientific pursuit. This manuscript represents a survey on the ability of MTs to modulate mercury neurotoxicity, a neurotoxin that has been implied to play an etiologic role in Minamata disease, erethism, and autism, just to name a few.

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Year:  2006        PMID: 17018868     DOI: 10.1177/153537020623100904

Source DB:  PubMed          Journal:  Exp Biol Med (Maywood)        ISSN: 1535-3699


  22 in total

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Review 3.  Metallothionein in the central nervous system: Roles in protection, regeneration and cognition.

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5.  Association Study Between Metallothionein-3 Protein Polymorphisms and Autism.

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7.  Modification of neurobehavioral effects of mercury by genetic polymorphisms of metallothionein in children.

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8.  An investigation of modifying effects of single nucleotide polymorphisms in metabolism-related genes on the relationship between peripheral nerve function and mercury levels in urine and hair.

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9.  Genetic polymorphisms affecting susceptibility to mercury neurotoxicity in children: summary findings from the Casa Pia Children's Amalgam clinical trial.

Authors:  James S Woods; Nicholas J Heyer; Joan E Russo; Michael D Martin; Federico M Farin
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10.  Effects of xenobiotics on total antioxidant capacity.

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