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Metal Complexes of Two Specific Regions of ZnuA, a Periplasmic Zinc(II) Transporter from Escherichia coli

[Image: see text] The crystal structure of ZnZnuA from Escherichia coli reveals two metal binding sites. (i) The primary binding site, His143, is located close the His-rich loop (residues 116–138) and plays a significant role in Zn(II) acquisition. (ii) The secondary binding site involves His224. In...

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Autores principales: Hecel, Aleksandra, Kola, Arian, Valensin, Daniela, Kozlowski, Henryk, Rowinska-Zyrek, Magdalena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7467640/
https://www.ncbi.nlm.nih.gov/pubmed/31970989
http://dx.doi.org/10.1021/acs.inorgchem.9b03298
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author Hecel, Aleksandra
Kola, Arian
Valensin, Daniela
Kozlowski, Henryk
Rowinska-Zyrek, Magdalena
author_facet Hecel, Aleksandra
Kola, Arian
Valensin, Daniela
Kozlowski, Henryk
Rowinska-Zyrek, Magdalena
author_sort Hecel, Aleksandra
collection PubMed
description [Image: see text] The crystal structure of ZnZnuA from Escherichia coli reveals two metal binding sites. (i) The primary binding site, His143, is located close the His-rich loop (residues 116–138) and plays a significant role in Zn(II) acquisition. (ii) The secondary binding site involves His224. In this work, we focus on understanding the interactions of two metal ions, Zn(II) and Cu(II), with two regions of ZnuA, which are possible anchoring sites for Zn(II): Ac-(115)MKSIHGDDDDHDHAEKSDEDHHHGDFNMHLW(145)-NH(2) (primary metal binding site) and Ac-(223)GHFTVNPEIQPGAQRLHE(240)-NH(2) (secondary metal binding site). The histidine-rich loop (residues 116–138) has a role in the capture of zinc(II), which is then further delivered into other regions of the protein. For both Zn(II) complexes, histidine residues constitute the main anchoring donors. In the longer, His-rich fragment, a tetrahedral complex with four His residues is formed, while in the second ligand, two imidazole nitrogens are involved in zinc(II) binding. In both cases, so-called loop structures are formed. One consists of a (125)HxHxExxxExHxH(137) motif with seven amino acid residues in the loop between the two central histidines, while the other is formed by a (224)HFTVNPEIQPGAQRLH(239) motif with 14 amino acid residues in the loop between the two nearest coordinating histidines. The number of available imidazoles also strongly affects the structure of copper(II) complexes; the more histidines in the studied region, the higher the pH in which amide nitrogens will participate in Cu(II) binding.
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spelling pubmed-74676402020-09-03 Metal Complexes of Two Specific Regions of ZnuA, a Periplasmic Zinc(II) Transporter from Escherichia coli Hecel, Aleksandra Kola, Arian Valensin, Daniela Kozlowski, Henryk Rowinska-Zyrek, Magdalena Inorg Chem [Image: see text] The crystal structure of ZnZnuA from Escherichia coli reveals two metal binding sites. (i) The primary binding site, His143, is located close the His-rich loop (residues 116–138) and plays a significant role in Zn(II) acquisition. (ii) The secondary binding site involves His224. In this work, we focus on understanding the interactions of two metal ions, Zn(II) and Cu(II), with two regions of ZnuA, which are possible anchoring sites for Zn(II): Ac-(115)MKSIHGDDDDHDHAEKSDEDHHHGDFNMHLW(145)-NH(2) (primary metal binding site) and Ac-(223)GHFTVNPEIQPGAQRLHE(240)-NH(2) (secondary metal binding site). The histidine-rich loop (residues 116–138) has a role in the capture of zinc(II), which is then further delivered into other regions of the protein. For both Zn(II) complexes, histidine residues constitute the main anchoring donors. In the longer, His-rich fragment, a tetrahedral complex with four His residues is formed, while in the second ligand, two imidazole nitrogens are involved in zinc(II) binding. In both cases, so-called loop structures are formed. One consists of a (125)HxHxExxxExHxH(137) motif with seven amino acid residues in the loop between the two central histidines, while the other is formed by a (224)HFTVNPEIQPGAQRLH(239) motif with 14 amino acid residues in the loop between the two nearest coordinating histidines. The number of available imidazoles also strongly affects the structure of copper(II) complexes; the more histidines in the studied region, the higher the pH in which amide nitrogens will participate in Cu(II) binding. American Chemical Society 2020-01-23 2020-02-03 /pmc/articles/PMC7467640/ /pubmed/31970989 http://dx.doi.org/10.1021/acs.inorgchem.9b03298 Text en Copyright © 2020 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Hecel, Aleksandra
Kola, Arian
Valensin, Daniela
Kozlowski, Henryk
Rowinska-Zyrek, Magdalena
Metal Complexes of Two Specific Regions of ZnuA, a Periplasmic Zinc(II) Transporter from Escherichia coli
title Metal Complexes of Two Specific Regions of ZnuA, a Periplasmic Zinc(II) Transporter from Escherichia coli
title_full Metal Complexes of Two Specific Regions of ZnuA, a Periplasmic Zinc(II) Transporter from Escherichia coli
title_fullStr Metal Complexes of Two Specific Regions of ZnuA, a Periplasmic Zinc(II) Transporter from Escherichia coli
title_full_unstemmed Metal Complexes of Two Specific Regions of ZnuA, a Periplasmic Zinc(II) Transporter from Escherichia coli
title_short Metal Complexes of Two Specific Regions of ZnuA, a Periplasmic Zinc(II) Transporter from Escherichia coli
title_sort metal complexes of two specific regions of znua, a periplasmic zinc(ii) transporter from escherichia coli
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7467640/
https://www.ncbi.nlm.nih.gov/pubmed/31970989
http://dx.doi.org/10.1021/acs.inorgchem.9b03298
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