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Three metallothionein isoforms and sequestration of intracellular silver in the hyperaccumulator Amanita strobiliformis
Author(s) -
Osobová Michaela,
Urban Václav,
Jedelský Petr L.,
Borovička Jan,
Gryndler Milan,
Ruml Tomas,
Kotrba Pavel
Publication year - 2011
Publication title -
new phytologist
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.742
H-Index - 244
eISSN - 1469-8137
pISSN - 0028-646X
DOI - 10.1111/j.1469-8137.2010.03634.x
Subject(s) - metallothionein , biology , complementary dna , intracellular , mutant , mycelium , biochemistry , cdna library , yeast , complementation , microbiology and biotechnology , botany , gene
Summary• Metallothioneins (MTs) are cysteine‐rich peptides involved in heavy metal tolerance of many eukaryotes. Here, we examined their involvement in intracellular binding of silver (Ag) in the ectomycorrhizal fungus Amanita strobiliformis . • The Ag complexes and their peptide ligands were characterized using chromatography and mass spectrometry. The full‐length coding sequences obtained from a cDNA library were used for complementation assays in yeast mutant strains. Abundance of respective transcripts in A. strobiliformis was measured by quantitative real‐time reverse‐transcribed polymerase chain reaction (qRT‐PCR). • Ag‐speciation analyses showed that intracellular Ag was in wild‐grown fruit bodies and cultured extraradical mycelia of A. strobiliformis sequestered by metallothioneins. The determined sequence of the peptide facilitated isolation of three cDNA clones, As MT1a , As MT1b and As MT1c . These encode isomorphic MTs consisting of 34 amino acid residues and sharing 82% identity. In mycelia the expression of As MT1 s is induced by Ag. All As MT1s expressed in yeasts complemented hypersensitivity of mutants to cadmium (Cd) and copper (Cu) and formed Ag complexes. Only the Ag‐AsMT1a complex was detected in the A. strobiliformis fruit body in which As MT1a was the prevailing transcript. • The present study identified the existence of metallothionein isoforms in ectomycorrhizal fungi. We demonstrated that intracellular sequestration of Ag in fruit bodies and mycelia of hyperaccumulating A. strobiliformis is dominated by metallothioneins.

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