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Does Variation of the Inter-Domain Linker Sequence Modulate the Metal Binding Behaviour of Helix pomatia Cd-Metallothionein?

Snail metallothioneins (MTs) constitute an ideal model to study structure/function relationships in these metal-binding polypeptides. Helix pomatia harbours three MT isoforms: the highly specific CdMT and CuMT, and an unspecific Cd/CuMT, which represent paralogous proteins with extremely different m...

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Autores principales: Gil-Moreno, Selene, Jiménez-Martí, Elena, Palacios, Òscar, Zerbe, Oliver, Dallinger, Reinhard, Capdevila, Mercè, Atrian, Sílvia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4730253/
https://www.ncbi.nlm.nih.gov/pubmed/26703589
http://dx.doi.org/10.3390/ijms17010006
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author Gil-Moreno, Selene
Jiménez-Martí, Elena
Palacios, Òscar
Zerbe, Oliver
Dallinger, Reinhard
Capdevila, Mercè
Atrian, Sílvia
author_facet Gil-Moreno, Selene
Jiménez-Martí, Elena
Palacios, Òscar
Zerbe, Oliver
Dallinger, Reinhard
Capdevila, Mercè
Atrian, Sílvia
author_sort Gil-Moreno, Selene
collection PubMed
description Snail metallothioneins (MTs) constitute an ideal model to study structure/function relationships in these metal-binding polypeptides. Helix pomatia harbours three MT isoforms: the highly specific CdMT and CuMT, and an unspecific Cd/CuMT, which represent paralogous proteins with extremely different metal binding preferences while sharing high sequence similarity. Preceding work allowed assessing that, although, the Cys residues are responsible for metal ion coordination, metal specificity or preference is achieved by diversification of the amino acids interspersed between them. The metal-specific MT polypeptides fold into unique, energetically-optimized complexes of defined metal content, when binding their cognate metal ions, while they produce a mixture of complexes, none of them representing a clear energy minimum, with non-cognate metal ions. Another critical, and so far mostly unexplored, region is the stretch linking the individual MT domains, each of which represents an independent metal cluster. In this work, we have designed and analyzed two HpCdMT constructs with substituted linker segments, and determined their coordination behavior when exposed to both cognate and non-cognate metal ions. Results unequivocally show that neither length nor composition of the inter-domain linker alter the features of the Zn(II)- and Cd(II)-complexes, but surprisingly that they influence their ability to bind Cu(I), the non-cognate metal ion.
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spelling pubmed-47302532016-02-11 Does Variation of the Inter-Domain Linker Sequence Modulate the Metal Binding Behaviour of Helix pomatia Cd-Metallothionein? Gil-Moreno, Selene Jiménez-Martí, Elena Palacios, Òscar Zerbe, Oliver Dallinger, Reinhard Capdevila, Mercè Atrian, Sílvia Int J Mol Sci Article Snail metallothioneins (MTs) constitute an ideal model to study structure/function relationships in these metal-binding polypeptides. Helix pomatia harbours three MT isoforms: the highly specific CdMT and CuMT, and an unspecific Cd/CuMT, which represent paralogous proteins with extremely different metal binding preferences while sharing high sequence similarity. Preceding work allowed assessing that, although, the Cys residues are responsible for metal ion coordination, metal specificity or preference is achieved by diversification of the amino acids interspersed between them. The metal-specific MT polypeptides fold into unique, energetically-optimized complexes of defined metal content, when binding their cognate metal ions, while they produce a mixture of complexes, none of them representing a clear energy minimum, with non-cognate metal ions. Another critical, and so far mostly unexplored, region is the stretch linking the individual MT domains, each of which represents an independent metal cluster. In this work, we have designed and analyzed two HpCdMT constructs with substituted linker segments, and determined their coordination behavior when exposed to both cognate and non-cognate metal ions. Results unequivocally show that neither length nor composition of the inter-domain linker alter the features of the Zn(II)- and Cd(II)-complexes, but surprisingly that they influence their ability to bind Cu(I), the non-cognate metal ion. MDPI 2015-12-22 /pmc/articles/PMC4730253/ /pubmed/26703589 http://dx.doi.org/10.3390/ijms17010006 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gil-Moreno, Selene
Jiménez-Martí, Elena
Palacios, Òscar
Zerbe, Oliver
Dallinger, Reinhard
Capdevila, Mercè
Atrian, Sílvia
Does Variation of the Inter-Domain Linker Sequence Modulate the Metal Binding Behaviour of Helix pomatia Cd-Metallothionein?
title Does Variation of the Inter-Domain Linker Sequence Modulate the Metal Binding Behaviour of Helix pomatia Cd-Metallothionein?
title_full Does Variation of the Inter-Domain Linker Sequence Modulate the Metal Binding Behaviour of Helix pomatia Cd-Metallothionein?
title_fullStr Does Variation of the Inter-Domain Linker Sequence Modulate the Metal Binding Behaviour of Helix pomatia Cd-Metallothionein?
title_full_unstemmed Does Variation of the Inter-Domain Linker Sequence Modulate the Metal Binding Behaviour of Helix pomatia Cd-Metallothionein?
title_short Does Variation of the Inter-Domain Linker Sequence Modulate the Metal Binding Behaviour of Helix pomatia Cd-Metallothionein?
title_sort does variation of the inter-domain linker sequence modulate the metal binding behaviour of helix pomatia cd-metallothionein?
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4730253/
https://www.ncbi.nlm.nih.gov/pubmed/26703589
http://dx.doi.org/10.3390/ijms17010006
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