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Cationic porphyrins are tunable gatekeepers of the 20S proteasome

The 20S proteasome is a barrel-shaped enzymatic assembly playing a critical role in proteome maintenance. Access of proteasome substrates to the catalytic chamber is finely regulated through gating mechanisms which involve aromatic and negatively charged residues located at the N-terminal tails of α...

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Autores principales: Santoro, Anna M., Cunsolo, Alessandra, D'Urso, Alessandro, Sbardella, Diego, Tundo, Grazia R., Ciaccio, Chiara, Coletta, Massimiliano, Diana, Donatella, Fattorusso, Roberto, Persico, Marco, Di Dato, Antonio, Fattorusso, Caterina, Milardi, Danilo, Purrello, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5975898/
https://www.ncbi.nlm.nih.gov/pubmed/29910886
http://dx.doi.org/10.1039/c5sc03312h
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author Santoro, Anna M.
Cunsolo, Alessandra
D'Urso, Alessandro
Sbardella, Diego
Tundo, Grazia R.
Ciaccio, Chiara
Coletta, Massimiliano
Diana, Donatella
Fattorusso, Roberto
Persico, Marco
Di Dato, Antonio
Fattorusso, Caterina
Milardi, Danilo
Purrello, Roberto
author_facet Santoro, Anna M.
Cunsolo, Alessandra
D'Urso, Alessandro
Sbardella, Diego
Tundo, Grazia R.
Ciaccio, Chiara
Coletta, Massimiliano
Diana, Donatella
Fattorusso, Roberto
Persico, Marco
Di Dato, Antonio
Fattorusso, Caterina
Milardi, Danilo
Purrello, Roberto
author_sort Santoro, Anna M.
collection PubMed
description The 20S proteasome is a barrel-shaped enzymatic assembly playing a critical role in proteome maintenance. Access of proteasome substrates to the catalytic chamber is finely regulated through gating mechanisms which involve aromatic and negatively charged residues located at the N-terminal tails of α subunits. However, despite the importance of gates in regulating proteasome function, up to now very few molecules have been shown to interfere with the equilibrium by which the catalytic channel exchanges between the open and closed states. In this light, and inspired by previous results evidencing the antiproteasome potential of cationic porphyrins, here we combine experimental (enzyme kinetics, UV stopped flow and NMR) and computational (bioinformatic analysis and docking studies) approaches to inspect proteasome inhibition by meso-tetrakis(4-N-methylpyridyl)-porphyrin (H(2)T4) and its two ortho- and meta-isomers. We show that in a first, fast binding event H(2)T4 accommodates in a pocket made of negatively charged and aromatic residues present in α1 (Asp10, Phe9), α3 (Tyr5), α5 (Asp9, Tyr8), α6 (Asp7, Tyr6) and α7 (Asp9, Tyr8) subunits thereby stabilizing the closed conformation. A second, slower binding mode involves interaction with the grooves which separate the α- from the β-rings. Of note, the proteasome inhibition by ortho- and meta-H(2)T4 decreases significantly if compared to the parent compound, thus underscoring the role played by spatial distribution of the four peripheral positive charges in regulating proteasome–ligand interactions. We think that our results may pave the way to further studies aimed at rationalizing the molecular basis of novel, and more sophisticated, proteasome regulatory mechanisms.
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spelling pubmed-59758982018-06-15 Cationic porphyrins are tunable gatekeepers of the 20S proteasome Santoro, Anna M. Cunsolo, Alessandra D'Urso, Alessandro Sbardella, Diego Tundo, Grazia R. Ciaccio, Chiara Coletta, Massimiliano Diana, Donatella Fattorusso, Roberto Persico, Marco Di Dato, Antonio Fattorusso, Caterina Milardi, Danilo Purrello, Roberto Chem Sci Chemistry The 20S proteasome is a barrel-shaped enzymatic assembly playing a critical role in proteome maintenance. Access of proteasome substrates to the catalytic chamber is finely regulated through gating mechanisms which involve aromatic and negatively charged residues located at the N-terminal tails of α subunits. However, despite the importance of gates in regulating proteasome function, up to now very few molecules have been shown to interfere with the equilibrium by which the catalytic channel exchanges between the open and closed states. In this light, and inspired by previous results evidencing the antiproteasome potential of cationic porphyrins, here we combine experimental (enzyme kinetics, UV stopped flow and NMR) and computational (bioinformatic analysis and docking studies) approaches to inspect proteasome inhibition by meso-tetrakis(4-N-methylpyridyl)-porphyrin (H(2)T4) and its two ortho- and meta-isomers. We show that in a first, fast binding event H(2)T4 accommodates in a pocket made of negatively charged and aromatic residues present in α1 (Asp10, Phe9), α3 (Tyr5), α5 (Asp9, Tyr8), α6 (Asp7, Tyr6) and α7 (Asp9, Tyr8) subunits thereby stabilizing the closed conformation. A second, slower binding mode involves interaction with the grooves which separate the α- from the β-rings. Of note, the proteasome inhibition by ortho- and meta-H(2)T4 decreases significantly if compared to the parent compound, thus underscoring the role played by spatial distribution of the four peripheral positive charges in regulating proteasome–ligand interactions. We think that our results may pave the way to further studies aimed at rationalizing the molecular basis of novel, and more sophisticated, proteasome regulatory mechanisms. Royal Society of Chemistry 2016-02-01 2015-11-09 /pmc/articles/PMC5975898/ /pubmed/29910886 http://dx.doi.org/10.1039/c5sc03312h Text en This journal is © The Royal Society of Chemistry 2016 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Santoro, Anna M.
Cunsolo, Alessandra
D'Urso, Alessandro
Sbardella, Diego
Tundo, Grazia R.
Ciaccio, Chiara
Coletta, Massimiliano
Diana, Donatella
Fattorusso, Roberto
Persico, Marco
Di Dato, Antonio
Fattorusso, Caterina
Milardi, Danilo
Purrello, Roberto
Cationic porphyrins are tunable gatekeepers of the 20S proteasome
title Cationic porphyrins are tunable gatekeepers of the 20S proteasome
title_full Cationic porphyrins are tunable gatekeepers of the 20S proteasome
title_fullStr Cationic porphyrins are tunable gatekeepers of the 20S proteasome
title_full_unstemmed Cationic porphyrins are tunable gatekeepers of the 20S proteasome
title_short Cationic porphyrins are tunable gatekeepers of the 20S proteasome
title_sort cationic porphyrins are tunable gatekeepers of the 20s proteasome
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5975898/
https://www.ncbi.nlm.nih.gov/pubmed/29910886
http://dx.doi.org/10.1039/c5sc03312h
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