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Histidine-Rich C-Terminal Tail of Mycobacterial GroEL1 and Its Copper Complex—The Impact of Point Mutations

[Image: see text] The mycobacterial histidine-rich GroEL1 protein differs significantly compared to the well-known methionine/glycine-rich GroEL chaperonin. It was predicted that mycobacterial GroEL1 can play a significant role in the metal homeostasis of Mycobacteria but not, as its analogue, in pr...

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Autores principales: Rola, Anna, Palacios, Oscar, Capdevila, Merce, Valensin, Daniela, Gumienna-Kontecka, Elżbieta, Potocki, Sławomir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10170517/
https://www.ncbi.nlm.nih.gov/pubmed/37092705
http://dx.doi.org/10.1021/acs.inorgchem.2c04486
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author Rola, Anna
Palacios, Oscar
Capdevila, Merce
Valensin, Daniela
Gumienna-Kontecka, Elżbieta
Potocki, Sławomir
author_facet Rola, Anna
Palacios, Oscar
Capdevila, Merce
Valensin, Daniela
Gumienna-Kontecka, Elżbieta
Potocki, Sławomir
author_sort Rola, Anna
collection PubMed
description [Image: see text] The mycobacterial histidine-rich GroEL1 protein differs significantly compared to the well-known methionine/glycine-rich GroEL chaperonin. It was predicted that mycobacterial GroEL1 can play a significant role in the metal homeostasis of Mycobacteria but not, as its analogue, in protein folding. In this paper, we present the properties of the GroEL1 His-rich C-terminus as a ligand for Cu(II) ions. We studied the stoichiometry, stability, and spectroscopic features of copper complexes of the eight model peptides: L1—Ac-DHDHHHGHAH, L2—Ac-DKPAKAEDHDHHHGHAH, and six mutants of L2 in the pH range of 2–11. We revealed the impact of adjacent residues to the His-rich fragment on the complex stability: the presence of Lys and Asp residues significantly increases the stability of the system. The impact of His mutations was also examined: surprisingly, the exchange of each single His to the Gln residue did not disrupt the ability of the ligand to provide three binding sites for Cu(II) ions. Despite the most possible preference of the Cu(II) ion for the His9–His13 residues (Ac-DKPAKAEDHDHHH-) of the model peptide, especially the His11 residue, the study shows that there is not only one possible binding mode for Cu(II). The significance of this phenomenon is very important for the GroEL1 function—if the single mutation occurs naturally, the protein would be still able to interact with the metal ion.
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spelling pubmed-101705172023-05-11 Histidine-Rich C-Terminal Tail of Mycobacterial GroEL1 and Its Copper Complex—The Impact of Point Mutations Rola, Anna Palacios, Oscar Capdevila, Merce Valensin, Daniela Gumienna-Kontecka, Elżbieta Potocki, Sławomir Inorg Chem [Image: see text] The mycobacterial histidine-rich GroEL1 protein differs significantly compared to the well-known methionine/glycine-rich GroEL chaperonin. It was predicted that mycobacterial GroEL1 can play a significant role in the metal homeostasis of Mycobacteria but not, as its analogue, in protein folding. In this paper, we present the properties of the GroEL1 His-rich C-terminus as a ligand for Cu(II) ions. We studied the stoichiometry, stability, and spectroscopic features of copper complexes of the eight model peptides: L1—Ac-DHDHHHGHAH, L2—Ac-DKPAKAEDHDHHHGHAH, and six mutants of L2 in the pH range of 2–11. We revealed the impact of adjacent residues to the His-rich fragment on the complex stability: the presence of Lys and Asp residues significantly increases the stability of the system. The impact of His mutations was also examined: surprisingly, the exchange of each single His to the Gln residue did not disrupt the ability of the ligand to provide three binding sites for Cu(II) ions. Despite the most possible preference of the Cu(II) ion for the His9–His13 residues (Ac-DKPAKAEDHDHHH-) of the model peptide, especially the His11 residue, the study shows that there is not only one possible binding mode for Cu(II). The significance of this phenomenon is very important for the GroEL1 function—if the single mutation occurs naturally, the protein would be still able to interact with the metal ion. American Chemical Society 2023-04-24 /pmc/articles/PMC10170517/ /pubmed/37092705 http://dx.doi.org/10.1021/acs.inorgchem.2c04486 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Rola, Anna
Palacios, Oscar
Capdevila, Merce
Valensin, Daniela
Gumienna-Kontecka, Elżbieta
Potocki, Sławomir
Histidine-Rich C-Terminal Tail of Mycobacterial GroEL1 and Its Copper Complex—The Impact of Point Mutations
title Histidine-Rich C-Terminal Tail of Mycobacterial GroEL1 and Its Copper Complex—The Impact of Point Mutations
title_full Histidine-Rich C-Terminal Tail of Mycobacterial GroEL1 and Its Copper Complex—The Impact of Point Mutations
title_fullStr Histidine-Rich C-Terminal Tail of Mycobacterial GroEL1 and Its Copper Complex—The Impact of Point Mutations
title_full_unstemmed Histidine-Rich C-Terminal Tail of Mycobacterial GroEL1 and Its Copper Complex—The Impact of Point Mutations
title_short Histidine-Rich C-Terminal Tail of Mycobacterial GroEL1 and Its Copper Complex—The Impact of Point Mutations
title_sort histidine-rich c-terminal tail of mycobacterial groel1 and its copper complex—the impact of point mutations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10170517/
https://www.ncbi.nlm.nih.gov/pubmed/37092705
http://dx.doi.org/10.1021/acs.inorgchem.2c04486
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