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Sequence-specific destabilization of azurin by tetramethylguanidinium-dipeptide ionic liquids

The thermal unfolding of the copper redox protein azurin was studied in the presence of four different dipeptide-based ionic liquids (ILs) utilizing tetramethylguanidinium as the cation. The four dipeptides have different sequences including the amino acids Ser and Asp: TMG-AspAsp, TMG-SerSer, TMG-S...

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Autores principales: Patel, Roshani, Clark, Austin K., DeStefano, Gabriella, DeStefano, Isabella, Gogoj, Hunter, Gray, Erin, Patel, Aashka Y., Hauner, Joshua T., Caputo, Gregory A., Vaden, Timothy D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8907678/
https://www.ncbi.nlm.nih.gov/pubmed/35280523
http://dx.doi.org/10.1016/j.bbrep.2022.101242
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author Patel, Roshani
Clark, Austin K.
DeStefano, Gabriella
DeStefano, Isabella
Gogoj, Hunter
Gray, Erin
Patel, Aashka Y.
Hauner, Joshua T.
Caputo, Gregory A.
Vaden, Timothy D.
author_facet Patel, Roshani
Clark, Austin K.
DeStefano, Gabriella
DeStefano, Isabella
Gogoj, Hunter
Gray, Erin
Patel, Aashka Y.
Hauner, Joshua T.
Caputo, Gregory A.
Vaden, Timothy D.
author_sort Patel, Roshani
collection PubMed
description The thermal unfolding of the copper redox protein azurin was studied in the presence of four different dipeptide-based ionic liquids (ILs) utilizing tetramethylguanidinium as the cation. The four dipeptides have different sequences including the amino acids Ser and Asp: TMG-AspAsp, TMG-SerSer, TMG-SerAsp, and TMG-AspSer. Thermal unfolding curves generated from temperature-dependent fluorescence spectroscopy experiments showed that TMG-AspAsp and TMG-SerSer have minor destabilizing effects on the protein while TMG-AspSer and TMG-SerAsp strongly destabilize azurin. Red-shifted fluorescence signatures in the 25 °C correlate with the observed protein destabilization in the solutions with TMG-AspSer and TMG-SerAsp. These signals could correspond to interactions between the Asp residue in the dipeptide and the azurin Trp residue in the unfolded state. These results, supported by appropriate control experiments, suggest that dipeptide sequence-specific interactions lead to selective protein destabilization and motivate further studies of TMG-dipeptide ILs.
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spelling pubmed-89076782022-03-11 Sequence-specific destabilization of azurin by tetramethylguanidinium-dipeptide ionic liquids Patel, Roshani Clark, Austin K. DeStefano, Gabriella DeStefano, Isabella Gogoj, Hunter Gray, Erin Patel, Aashka Y. Hauner, Joshua T. Caputo, Gregory A. Vaden, Timothy D. Biochem Biophys Rep Research Article The thermal unfolding of the copper redox protein azurin was studied in the presence of four different dipeptide-based ionic liquids (ILs) utilizing tetramethylguanidinium as the cation. The four dipeptides have different sequences including the amino acids Ser and Asp: TMG-AspAsp, TMG-SerSer, TMG-SerAsp, and TMG-AspSer. Thermal unfolding curves generated from temperature-dependent fluorescence spectroscopy experiments showed that TMG-AspAsp and TMG-SerSer have minor destabilizing effects on the protein while TMG-AspSer and TMG-SerAsp strongly destabilize azurin. Red-shifted fluorescence signatures in the 25 °C correlate with the observed protein destabilization in the solutions with TMG-AspSer and TMG-SerAsp. These signals could correspond to interactions between the Asp residue in the dipeptide and the azurin Trp residue in the unfolded state. These results, supported by appropriate control experiments, suggest that dipeptide sequence-specific interactions lead to selective protein destabilization and motivate further studies of TMG-dipeptide ILs. Elsevier 2022-03-08 /pmc/articles/PMC8907678/ /pubmed/35280523 http://dx.doi.org/10.1016/j.bbrep.2022.101242 Text en © 2022 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
Patel, Roshani
Clark, Austin K.
DeStefano, Gabriella
DeStefano, Isabella
Gogoj, Hunter
Gray, Erin
Patel, Aashka Y.
Hauner, Joshua T.
Caputo, Gregory A.
Vaden, Timothy D.
Sequence-specific destabilization of azurin by tetramethylguanidinium-dipeptide ionic liquids
title Sequence-specific destabilization of azurin by tetramethylguanidinium-dipeptide ionic liquids
title_full Sequence-specific destabilization of azurin by tetramethylguanidinium-dipeptide ionic liquids
title_fullStr Sequence-specific destabilization of azurin by tetramethylguanidinium-dipeptide ionic liquids
title_full_unstemmed Sequence-specific destabilization of azurin by tetramethylguanidinium-dipeptide ionic liquids
title_short Sequence-specific destabilization of azurin by tetramethylguanidinium-dipeptide ionic liquids
title_sort sequence-specific destabilization of azurin by tetramethylguanidinium-dipeptide ionic liquids
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8907678/
https://www.ncbi.nlm.nih.gov/pubmed/35280523
http://dx.doi.org/10.1016/j.bbrep.2022.101242
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