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Copper sensing function of Drosophila metal-responsive transcription factor-1 is mediated by a tetranuclear Cu(I) cluster

Drosophila melanogaster MTF-1 (dMTF-1) is a copper-responsive transcriptional activator that mediates resistance to Cu, as well as Zn and Cd. Here, we characterize a novel cysteine-rich domain which is crucial for sensing excess intracellular copper by dMTF-1. Transgenic flies expressing mutant dMTF...

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Autores principales: Chen, Xiaohua, Hua, Haiqing, Balamurugan, Kuppusamy, Kong, Xiangming, Zhang, Limei, George, Graham N., Georgiev, Oleg, Schaffner, Walter, Giedroc, David P.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2396432/
https://www.ncbi.nlm.nih.gov/pubmed/18411209
http://dx.doi.org/10.1093/nar/gkn103
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author Chen, Xiaohua
Hua, Haiqing
Balamurugan, Kuppusamy
Kong, Xiangming
Zhang, Limei
George, Graham N.
Georgiev, Oleg
Schaffner, Walter
Giedroc, David P.
author_facet Chen, Xiaohua
Hua, Haiqing
Balamurugan, Kuppusamy
Kong, Xiangming
Zhang, Limei
George, Graham N.
Georgiev, Oleg
Schaffner, Walter
Giedroc, David P.
author_sort Chen, Xiaohua
collection PubMed
description Drosophila melanogaster MTF-1 (dMTF-1) is a copper-responsive transcriptional activator that mediates resistance to Cu, as well as Zn and Cd. Here, we characterize a novel cysteine-rich domain which is crucial for sensing excess intracellular copper by dMTF-1. Transgenic flies expressing mutant dMTF-1 containing alanine substitutions of two, four or six cysteine residues within the sequence (547)CNCTNCKCDQTKSCHGGDC(565) are significantly or completely impaired in their ability to protect flies from copper toxicity and fail to up-regulate MtnA (metallothionein) expression in response to excess Cu. In contrast, these flies exhibit wild-type survival in response to copper deprivation thus revealing that the cysteine cluster domain is required only for sensing Cu load by dMTF-1. Parallel studies show that the isolated cysteine cluster domain is required to protect a copper-sensitive S. cerevisiae ace1Δ strain from copper toxicity. Cu(I) ligation by a Cys-rich domain peptide fragment drives the cooperative assembly of a polydentate [Cu(4)-S(6)] cage structure, characterized by a core of trigonally S(3) coordinated Cu(I) ions bound by bridging thiolate ligands. While reminiscent of Cu(4)-L(6) (L = ligand) tetranuclear clusters in copper regulatory transcription factors of yeast, the absence of significant sequence homology is consistent with convergent evolution of a sensing strategy particularly well suited for Cu(I).
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spelling pubmed-23964322008-05-28 Copper sensing function of Drosophila metal-responsive transcription factor-1 is mediated by a tetranuclear Cu(I) cluster Chen, Xiaohua Hua, Haiqing Balamurugan, Kuppusamy Kong, Xiangming Zhang, Limei George, Graham N. Georgiev, Oleg Schaffner, Walter Giedroc, David P. Nucleic Acids Res Structural Biology Drosophila melanogaster MTF-1 (dMTF-1) is a copper-responsive transcriptional activator that mediates resistance to Cu, as well as Zn and Cd. Here, we characterize a novel cysteine-rich domain which is crucial for sensing excess intracellular copper by dMTF-1. Transgenic flies expressing mutant dMTF-1 containing alanine substitutions of two, four or six cysteine residues within the sequence (547)CNCTNCKCDQTKSCHGGDC(565) are significantly or completely impaired in their ability to protect flies from copper toxicity and fail to up-regulate MtnA (metallothionein) expression in response to excess Cu. In contrast, these flies exhibit wild-type survival in response to copper deprivation thus revealing that the cysteine cluster domain is required only for sensing Cu load by dMTF-1. Parallel studies show that the isolated cysteine cluster domain is required to protect a copper-sensitive S. cerevisiae ace1Δ strain from copper toxicity. Cu(I) ligation by a Cys-rich domain peptide fragment drives the cooperative assembly of a polydentate [Cu(4)-S(6)] cage structure, characterized by a core of trigonally S(3) coordinated Cu(I) ions bound by bridging thiolate ligands. While reminiscent of Cu(4)-L(6) (L = ligand) tetranuclear clusters in copper regulatory transcription factors of yeast, the absence of significant sequence homology is consistent with convergent evolution of a sensing strategy particularly well suited for Cu(I). Oxford University Press 2008-05 2008-04-13 /pmc/articles/PMC2396432/ /pubmed/18411209 http://dx.doi.org/10.1093/nar/gkn103 Text en © 2008 The Author(s) http://creativecommons.org/licenses/by-nc/2.0/uk/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Structural Biology
Chen, Xiaohua
Hua, Haiqing
Balamurugan, Kuppusamy
Kong, Xiangming
Zhang, Limei
George, Graham N.
Georgiev, Oleg
Schaffner, Walter
Giedroc, David P.
Copper sensing function of Drosophila metal-responsive transcription factor-1 is mediated by a tetranuclear Cu(I) cluster
title Copper sensing function of Drosophila metal-responsive transcription factor-1 is mediated by a tetranuclear Cu(I) cluster
title_full Copper sensing function of Drosophila metal-responsive transcription factor-1 is mediated by a tetranuclear Cu(I) cluster
title_fullStr Copper sensing function of Drosophila metal-responsive transcription factor-1 is mediated by a tetranuclear Cu(I) cluster
title_full_unstemmed Copper sensing function of Drosophila metal-responsive transcription factor-1 is mediated by a tetranuclear Cu(I) cluster
title_short Copper sensing function of Drosophila metal-responsive transcription factor-1 is mediated by a tetranuclear Cu(I) cluster
title_sort copper sensing function of drosophila metal-responsive transcription factor-1 is mediated by a tetranuclear cu(i) cluster
topic Structural Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2396432/
https://www.ncbi.nlm.nih.gov/pubmed/18411209
http://dx.doi.org/10.1093/nar/gkn103
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