Cargando…

Protein Binding of Benzofuran Derivatives: A CD Spectroscopic and In Silico Comparative Study of the Effects of 4-Nitrophenyl Functionalized Benzofurans and Benzodifurans on BSA Protein Structure

Benzofuran derivatives are synthetic compounds that are finding an increasing interest in the scientific community not only as building blocks for the realization of new materials, but also as potential drugs thanks to their ability to interact with nucleic acids, interfere with the amyloid peptide...

Descripción completa

Detalles Bibliográficos
Autores principales: Scognamiglio, Pasqualina Liana, Vicidomini, Caterina, Fontanella, Francesco, De Stefano, Claudio, Palumbo, Rosanna, Roviello, Giovanni N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8961527/
https://www.ncbi.nlm.nih.gov/pubmed/35204762
http://dx.doi.org/10.3390/biom12020262
_version_ 1784677614773862400
author Scognamiglio, Pasqualina Liana
Vicidomini, Caterina
Fontanella, Francesco
De Stefano, Claudio
Palumbo, Rosanna
Roviello, Giovanni N.
author_facet Scognamiglio, Pasqualina Liana
Vicidomini, Caterina
Fontanella, Francesco
De Stefano, Claudio
Palumbo, Rosanna
Roviello, Giovanni N.
author_sort Scognamiglio, Pasqualina Liana
collection PubMed
description Benzofuran derivatives are synthetic compounds that are finding an increasing interest in the scientific community not only as building blocks for the realization of new materials, but also as potential drugs thanks to their ability to interact with nucleic acids, interfere with the amyloid peptide aggregation and cancer cell cycle. However, their ability to interact with proteins is a theme still in need of investigation for the therapeutic importance that benzofurans could have in the modulation of protein-driven processes and for the possibility of making use of serum albumins as benzofurans delivery systems. To this scope, we investigated the protein binding ability of two 4-nitrophenyl-functionalized benzofurans previously synthesized in our laboratory and herein indicated as BF1 and BDF1, which differed for the number of furan rings (a single moiety in BF1, two in BDF1), using bovine serum albumin (BSA) as a model protein. By circular dichroism (CD) spectroscopy we demonstrated the ability of the two heteroaromatic compounds to alter the secondary structure of the serum albumin leading to different consequences in terms of BSA thermal stability with respect to the unbound protein (ΔT(m) > 3 °C for BF1, −0.8 °C for BDF1 with respect to unbound BSA, in PBS buffer, pH 7.5) as revealed in our CD melting studies. Moreover, a molecular docking study allowed us to compare the possible ligand binding modes of the mono and difuranic derivatives showing that while BF1 is preferentially housed in the interior of protein structure, BDF1 is predicted to bind the albumin surface with a lower affinity than BF1. Interestingly, the different affinity for the protein target predicted computationally was confirmed also experimentally by fluorescence spectroscopy (k(D) = 142.4 ± 64.6 nM for BDF1 vs. 28.4 ± 10.1 nM for BF1). Overall, the above findings suggest the ability of benzofurans to bind serum albumins that could act as their carriers in drug delivery applications.
format Online
Article
Text
id pubmed-8961527
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-89615272022-03-30 Protein Binding of Benzofuran Derivatives: A CD Spectroscopic and In Silico Comparative Study of the Effects of 4-Nitrophenyl Functionalized Benzofurans and Benzodifurans on BSA Protein Structure Scognamiglio, Pasqualina Liana Vicidomini, Caterina Fontanella, Francesco De Stefano, Claudio Palumbo, Rosanna Roviello, Giovanni N. Biomolecules Article Benzofuran derivatives are synthetic compounds that are finding an increasing interest in the scientific community not only as building blocks for the realization of new materials, but also as potential drugs thanks to their ability to interact with nucleic acids, interfere with the amyloid peptide aggregation and cancer cell cycle. However, their ability to interact with proteins is a theme still in need of investigation for the therapeutic importance that benzofurans could have in the modulation of protein-driven processes and for the possibility of making use of serum albumins as benzofurans delivery systems. To this scope, we investigated the protein binding ability of two 4-nitrophenyl-functionalized benzofurans previously synthesized in our laboratory and herein indicated as BF1 and BDF1, which differed for the number of furan rings (a single moiety in BF1, two in BDF1), using bovine serum albumin (BSA) as a model protein. By circular dichroism (CD) spectroscopy we demonstrated the ability of the two heteroaromatic compounds to alter the secondary structure of the serum albumin leading to different consequences in terms of BSA thermal stability with respect to the unbound protein (ΔT(m) > 3 °C for BF1, −0.8 °C for BDF1 with respect to unbound BSA, in PBS buffer, pH 7.5) as revealed in our CD melting studies. Moreover, a molecular docking study allowed us to compare the possible ligand binding modes of the mono and difuranic derivatives showing that while BF1 is preferentially housed in the interior of protein structure, BDF1 is predicted to bind the albumin surface with a lower affinity than BF1. Interestingly, the different affinity for the protein target predicted computationally was confirmed also experimentally by fluorescence spectroscopy (k(D) = 142.4 ± 64.6 nM for BDF1 vs. 28.4 ± 10.1 nM for BF1). Overall, the above findings suggest the ability of benzofurans to bind serum albumins that could act as their carriers in drug delivery applications. MDPI 2022-02-05 /pmc/articles/PMC8961527/ /pubmed/35204762 http://dx.doi.org/10.3390/biom12020262 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Scognamiglio, Pasqualina Liana
Vicidomini, Caterina
Fontanella, Francesco
De Stefano, Claudio
Palumbo, Rosanna
Roviello, Giovanni N.
Protein Binding of Benzofuran Derivatives: A CD Spectroscopic and In Silico Comparative Study of the Effects of 4-Nitrophenyl Functionalized Benzofurans and Benzodifurans on BSA Protein Structure
title Protein Binding of Benzofuran Derivatives: A CD Spectroscopic and In Silico Comparative Study of the Effects of 4-Nitrophenyl Functionalized Benzofurans and Benzodifurans on BSA Protein Structure
title_full Protein Binding of Benzofuran Derivatives: A CD Spectroscopic and In Silico Comparative Study of the Effects of 4-Nitrophenyl Functionalized Benzofurans and Benzodifurans on BSA Protein Structure
title_fullStr Protein Binding of Benzofuran Derivatives: A CD Spectroscopic and In Silico Comparative Study of the Effects of 4-Nitrophenyl Functionalized Benzofurans and Benzodifurans on BSA Protein Structure
title_full_unstemmed Protein Binding of Benzofuran Derivatives: A CD Spectroscopic and In Silico Comparative Study of the Effects of 4-Nitrophenyl Functionalized Benzofurans and Benzodifurans on BSA Protein Structure
title_short Protein Binding of Benzofuran Derivatives: A CD Spectroscopic and In Silico Comparative Study of the Effects of 4-Nitrophenyl Functionalized Benzofurans and Benzodifurans on BSA Protein Structure
title_sort protein binding of benzofuran derivatives: a cd spectroscopic and in silico comparative study of the effects of 4-nitrophenyl functionalized benzofurans and benzodifurans on bsa protein structure
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8961527/
https://www.ncbi.nlm.nih.gov/pubmed/35204762
http://dx.doi.org/10.3390/biom12020262
work_keys_str_mv AT scognamigliopasqualinaliana proteinbindingofbenzofuranderivativesacdspectroscopicandinsilicocomparativestudyoftheeffectsof4nitrophenylfunctionalizedbenzofuransandbenzodifuransonbsaproteinstructure
AT vicidominicaterina proteinbindingofbenzofuranderivativesacdspectroscopicandinsilicocomparativestudyoftheeffectsof4nitrophenylfunctionalizedbenzofuransandbenzodifuransonbsaproteinstructure
AT fontanellafrancesco proteinbindingofbenzofuranderivativesacdspectroscopicandinsilicocomparativestudyoftheeffectsof4nitrophenylfunctionalizedbenzofuransandbenzodifuransonbsaproteinstructure
AT destefanoclaudio proteinbindingofbenzofuranderivativesacdspectroscopicandinsilicocomparativestudyoftheeffectsof4nitrophenylfunctionalizedbenzofuransandbenzodifuransonbsaproteinstructure
AT palumborosanna proteinbindingofbenzofuranderivativesacdspectroscopicandinsilicocomparativestudyoftheeffectsof4nitrophenylfunctionalizedbenzofuransandbenzodifuransonbsaproteinstructure
AT roviellogiovannin proteinbindingofbenzofuranderivativesacdspectroscopicandinsilicocomparativestudyoftheeffectsof4nitrophenylfunctionalizedbenzofuransandbenzodifuransonbsaproteinstructure