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The copper-linked Escherichia coli AZY operon: Structure, metal binding, and a possible physiological role in copper delivery

The Escherichia coli yobA–yebZ–yebY (AZY) operon encodes the proteins YobA, YebZ, and YebY. YobA and YebZ are homologs of the CopC periplasmic copper-binding protein and the CopD putative copper importer, respectively, whereas YebY belongs to the uncharacterized Domain of Unknown Function 2511 famil...

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Autores principales: Hadley, Rose C., Zhitnitsky, Daniel, Livnat-Levanon, Nurit, Masrati, Gal, Vigonsky, Elena, Rose, Jessica, Ben-Tal, Nir, Rosenzweig, Amy C., Lewinson, Oded
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8689200/
https://www.ncbi.nlm.nih.gov/pubmed/34822841
http://dx.doi.org/10.1016/j.jbc.2021.101445
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author Hadley, Rose C.
Zhitnitsky, Daniel
Livnat-Levanon, Nurit
Masrati, Gal
Vigonsky, Elena
Rose, Jessica
Ben-Tal, Nir
Rosenzweig, Amy C.
Lewinson, Oded
author_facet Hadley, Rose C.
Zhitnitsky, Daniel
Livnat-Levanon, Nurit
Masrati, Gal
Vigonsky, Elena
Rose, Jessica
Ben-Tal, Nir
Rosenzweig, Amy C.
Lewinson, Oded
author_sort Hadley, Rose C.
collection PubMed
description The Escherichia coli yobA–yebZ–yebY (AZY) operon encodes the proteins YobA, YebZ, and YebY. YobA and YebZ are homologs of the CopC periplasmic copper-binding protein and the CopD putative copper importer, respectively, whereas YebY belongs to the uncharacterized Domain of Unknown Function 2511 family. Despite numerous studies of E. coli copper homeostasis and the existence of the AZY operon in a range of bacteria, the operon's proteins and their functional roles have not been explored. In this study, we present the first biochemical and functional studies of the AZY proteins. Biochemical characterization and structural modeling indicate that YobA binds a single Cu(2+) ion with high affinity. Bioinformatics analysis shows that YebY is widespread and encoded either in AZY operons or in other genetic contexts unrelated to copper homeostasis. We also determined the 1.8 Å resolution crystal structure of E. coli YebY, which closely resembles that of the lantibiotic self-resistance protein MlbQ. Two strictly conserved cysteine residues form a disulfide bond, consistent with the observed periplasmic localization of YebY. Upon treatment with reductants, YebY binds Cu(+) and Cu(2+) with low affinity, as demonstrated by metal-binding analysis and tryptophan fluorescence. Finally, genetic manipulations show that the AZY operon is not involved in copper tolerance or antioxidant defense. Instead, YebY and YobA are required for the activity of the copper-related NADH dehydrogenase II. These results are consistent with a potential role of the AZY operon in copper delivery to membrane proteins.
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spelling pubmed-86892002021-12-30 The copper-linked Escherichia coli AZY operon: Structure, metal binding, and a possible physiological role in copper delivery Hadley, Rose C. Zhitnitsky, Daniel Livnat-Levanon, Nurit Masrati, Gal Vigonsky, Elena Rose, Jessica Ben-Tal, Nir Rosenzweig, Amy C. Lewinson, Oded J Biol Chem Research Article The Escherichia coli yobA–yebZ–yebY (AZY) operon encodes the proteins YobA, YebZ, and YebY. YobA and YebZ are homologs of the CopC periplasmic copper-binding protein and the CopD putative copper importer, respectively, whereas YebY belongs to the uncharacterized Domain of Unknown Function 2511 family. Despite numerous studies of E. coli copper homeostasis and the existence of the AZY operon in a range of bacteria, the operon's proteins and their functional roles have not been explored. In this study, we present the first biochemical and functional studies of the AZY proteins. Biochemical characterization and structural modeling indicate that YobA binds a single Cu(2+) ion with high affinity. Bioinformatics analysis shows that YebY is widespread and encoded either in AZY operons or in other genetic contexts unrelated to copper homeostasis. We also determined the 1.8 Å resolution crystal structure of E. coli YebY, which closely resembles that of the lantibiotic self-resistance protein MlbQ. Two strictly conserved cysteine residues form a disulfide bond, consistent with the observed periplasmic localization of YebY. Upon treatment with reductants, YebY binds Cu(+) and Cu(2+) with low affinity, as demonstrated by metal-binding analysis and tryptophan fluorescence. Finally, genetic manipulations show that the AZY operon is not involved in copper tolerance or antioxidant defense. Instead, YebY and YobA are required for the activity of the copper-related NADH dehydrogenase II. These results are consistent with a potential role of the AZY operon in copper delivery to membrane proteins. American Society for Biochemistry and Molecular Biology 2021-11-23 /pmc/articles/PMC8689200/ /pubmed/34822841 http://dx.doi.org/10.1016/j.jbc.2021.101445 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Hadley, Rose C.
Zhitnitsky, Daniel
Livnat-Levanon, Nurit
Masrati, Gal
Vigonsky, Elena
Rose, Jessica
Ben-Tal, Nir
Rosenzweig, Amy C.
Lewinson, Oded
The copper-linked Escherichia coli AZY operon: Structure, metal binding, and a possible physiological role in copper delivery
title The copper-linked Escherichia coli AZY operon: Structure, metal binding, and a possible physiological role in copper delivery
title_full The copper-linked Escherichia coli AZY operon: Structure, metal binding, and a possible physiological role in copper delivery
title_fullStr The copper-linked Escherichia coli AZY operon: Structure, metal binding, and a possible physiological role in copper delivery
title_full_unstemmed The copper-linked Escherichia coli AZY operon: Structure, metal binding, and a possible physiological role in copper delivery
title_short The copper-linked Escherichia coli AZY operon: Structure, metal binding, and a possible physiological role in copper delivery
title_sort copper-linked escherichia coli azy operon: structure, metal binding, and a possible physiological role in copper delivery
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8689200/
https://www.ncbi.nlm.nih.gov/pubmed/34822841
http://dx.doi.org/10.1016/j.jbc.2021.101445
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