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Permeation of β-Lactamase Inhibitors through the General Porins of Gram-Negative Bacteria

Modern medicine relies upon antibiotics, but we have arrived to the point where our inability to come up with new effective molecules against resistant pathogens, together with the declining private investment, is resulting in the number of untreatable infections increasing worldwide at worrying pac...

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Autores principales: Pira, Alessandro, Scorciapino, Mariano Andrea, Bodrenko, Igor V., Bosin, Andrea, Acosta-Gutiérrez, Silvia, Ceccarelli, Matteo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7730927/
https://www.ncbi.nlm.nih.gov/pubmed/33291474
http://dx.doi.org/10.3390/molecules25235747
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author Pira, Alessandro
Scorciapino, Mariano Andrea
Bodrenko, Igor V.
Bosin, Andrea
Acosta-Gutiérrez, Silvia
Ceccarelli, Matteo
author_facet Pira, Alessandro
Scorciapino, Mariano Andrea
Bodrenko, Igor V.
Bosin, Andrea
Acosta-Gutiérrez, Silvia
Ceccarelli, Matteo
author_sort Pira, Alessandro
collection PubMed
description Modern medicine relies upon antibiotics, but we have arrived to the point where our inability to come up with new effective molecules against resistant pathogens, together with the declining private investment, is resulting in the number of untreatable infections increasing worldwide at worrying pace. Among other pathogens, widely recognized institutions have indicated Gram-negative bacteria as particularly challenging, due to the presence of the outer membrane. The very first step in the action of every antibiotic or adjuvant is the permeation through this membrane, with small hydrophilic drugs usually crossing through protein channels. Thus, a detailed understanding of their properties at a molecular level is crucial. By making use of Molecular Dynamics simulations, we compared the two main porins of four members of the Enterobacteriaceae family, and, in this paper, we show their shared geometrical and electrostatic characteristics. Then, we used metadynamics simulations to reconstruct the free energy for permeation of selected diazobicyclooctans through OmpF. We demonstrate how porins features are coupled to those of the translocating species, modulating their passive permeation. In particular, we show that the minimal projection area of a molecule is a better descriptor than its molecular mass or the volume. Together with the magnitude and orientation of the electric dipole moment, these are the crucial parameters to gain an efficient compensation between the entropic and enthalpic contributions to the free energy barrier required for permeation. Our results confirm the possibility to predict the permeability of molecules through porins by using a few molecular parameters and bolster the general model according to which the free energy increase is mostly due to the decrease of conformational entropy, and this can be compensated by a favorable alignment of the electric dipole with respect to the channel intrinsic electric field.
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spelling pubmed-77309272020-12-12 Permeation of β-Lactamase Inhibitors through the General Porins of Gram-Negative Bacteria Pira, Alessandro Scorciapino, Mariano Andrea Bodrenko, Igor V. Bosin, Andrea Acosta-Gutiérrez, Silvia Ceccarelli, Matteo Molecules Article Modern medicine relies upon antibiotics, but we have arrived to the point where our inability to come up with new effective molecules against resistant pathogens, together with the declining private investment, is resulting in the number of untreatable infections increasing worldwide at worrying pace. Among other pathogens, widely recognized institutions have indicated Gram-negative bacteria as particularly challenging, due to the presence of the outer membrane. The very first step in the action of every antibiotic or adjuvant is the permeation through this membrane, with small hydrophilic drugs usually crossing through protein channels. Thus, a detailed understanding of their properties at a molecular level is crucial. By making use of Molecular Dynamics simulations, we compared the two main porins of four members of the Enterobacteriaceae family, and, in this paper, we show their shared geometrical and electrostatic characteristics. Then, we used metadynamics simulations to reconstruct the free energy for permeation of selected diazobicyclooctans through OmpF. We demonstrate how porins features are coupled to those of the translocating species, modulating their passive permeation. In particular, we show that the minimal projection area of a molecule is a better descriptor than its molecular mass or the volume. Together with the magnitude and orientation of the electric dipole moment, these are the crucial parameters to gain an efficient compensation between the entropic and enthalpic contributions to the free energy barrier required for permeation. Our results confirm the possibility to predict the permeability of molecules through porins by using a few molecular parameters and bolster the general model according to which the free energy increase is mostly due to the decrease of conformational entropy, and this can be compensated by a favorable alignment of the electric dipole with respect to the channel intrinsic electric field. MDPI 2020-12-05 /pmc/articles/PMC7730927/ /pubmed/33291474 http://dx.doi.org/10.3390/molecules25235747 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pira, Alessandro
Scorciapino, Mariano Andrea
Bodrenko, Igor V.
Bosin, Andrea
Acosta-Gutiérrez, Silvia
Ceccarelli, Matteo
Permeation of β-Lactamase Inhibitors through the General Porins of Gram-Negative Bacteria
title Permeation of β-Lactamase Inhibitors through the General Porins of Gram-Negative Bacteria
title_full Permeation of β-Lactamase Inhibitors through the General Porins of Gram-Negative Bacteria
title_fullStr Permeation of β-Lactamase Inhibitors through the General Porins of Gram-Negative Bacteria
title_full_unstemmed Permeation of β-Lactamase Inhibitors through the General Porins of Gram-Negative Bacteria
title_short Permeation of β-Lactamase Inhibitors through the General Porins of Gram-Negative Bacteria
title_sort permeation of β-lactamase inhibitors through the general porins of gram-negative bacteria
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7730927/
https://www.ncbi.nlm.nih.gov/pubmed/33291474
http://dx.doi.org/10.3390/molecules25235747
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