Literature DB >> 24674773

Intracellular sequestration of zinc, cadmium and silver in Hebeloma mesophaeum and characterization of its metallothionein genes.

Jan Sácký1, Tereza Leonhardt1, Jan Borovička2, Milan Gryndler3, Aleš Briksí1, Pavel Kotrba4.   

Abstract

Sequestration of intracellular heavy metals in eukaryotes involves compartmentalization and binding with cytosolic, cysteine-rich metallothionein (MT) peptides. We examined the roles of these processes in handling of zinc (Zn), cadmium (Cd) and silver (Ag) in sporocarps and a metal-exposed extraradical mycelium of Hebeloma mesophaeum, the Zn-accumulating ectomycorrhizal (EM) species frequently associated with metal disturbed sites. Size exclusion chromatography revealed that the majority of Zn and Cd in the sporocarps and mycelium was contained in a low molecular mass fraction attributable to compartmentalized metal. The staining of hyphal cells with the Zn-specific Zinquin and Cd-specific Leadmium fluorescent tracers labeled Zn and Cd in small, punctuated vesicles and vacuoles, respectively. By contrast, the sporocarp and mycelium Ag was associated with cysteine-rich, 5-kDa peptides. The peptides of the same size were also identified in minor Zn and Cd complexes from the metal-exposed mycelium. We have further isolated and characterized HmMT1, HmMT2 and HmMT3 genes coding for different 5-kDa MTs of H. mesophaeum collected at a lead smelter site. Heterologous complementation assays in metal-sensitive yeast mutants indicated that HmMTs encode functional, metal-specific peptides: only HmMT1 was able to complement sensitivity to Zn; HmMT1 conferred higher tolerance to Cd and Cu than HmMT2 or HmMT3; and both HmMT2 and HmMT3, but not HmMT1, conferred increased tolerance to Ag. The presence of HmMT1 and HmMT3, but not HmMT2, was also confirmed in a H. mesophaeum isolate from an unpolluted site. Gene expression analysis in the extraradical mycelium of this isolate revealed that the transcription of HmMT1 was preferentially induced in the presence of Zn and Cd, while Ag was a stronger inducer of HmMT3. Altogether, these results improve our understanding of the handling of intracellular Zn, Cd and Ag in Hebeloma and represent the first evidence suggesting involvement of MTs in sequestration of Zn in EM fungi.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Compartmentalization; Hebeloma mesophaeum; Metal tolerance; Metallothionein; Mycorrhizal fungi

Mesh:

Substances:

Year:  2014        PMID: 24674773     DOI: 10.1016/j.fgb.2014.03.003

Source DB:  PubMed          Journal:  Fungal Genet Biol        ISSN: 1087-1845            Impact factor:   3.495


  9 in total

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3.  Heterologous expression of Zn-binding peptide RaZBP1 from Russula bresadolae does not overcome Zn and Cd detoxification mechanisms in Hebeloma mesophaeum.

Authors:  Vojtěch Beneš; Tereza Leonhardt; Antonín Kaňa; Jan Sácký; Pavel Kotrba
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5.  Manganese tolerance in yeasts involves polyphosphate, magnesium, and vacuolar alterations.

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7.  Understanding the phyto-interaction of heavy metal oxide bulk and nanoparticles: evaluation of seed germination, growth, bioaccumulation, and metallothionein production.

Authors:  Bilal Ahmed; Asfa Rizvi; Almas Zaidi; Mohammad Saghir Khan; Javed Musarrat
Journal:  RSC Adv       Date:  2019-02-01       Impact factor: 3.361

8.  Two P1B-1-ATPases of Amanita strobiliformis With Distinct Properties in Cu/Ag Transport.

Authors:  Vojtěch Beneš; Tereza Leonhardt; Jan Sácký; Pavel Kotrba
Journal:  Front Microbiol       Date:  2018-04-23       Impact factor: 5.640

Review 9.  Fungal-Metal Interactions: A Review of Toxicity and Homeostasis.

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Journal:  J Fungi (Basel)       Date:  2021-03-18
  9 in total

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