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Macroscopic electric field inside water-filled biological nanopores.
Acosta Gutiérrez, Silvia; Bodrenko, Igor; Scorciapino, Mariano Andrea; Ceccarelli, Matteo.
Afiliação
  • Acosta Gutiérrez S; Department of Physics, University of Cagliari, Cittadella universitaria di Monserrato, S.P.8 - km 0.700, 09042 Monserrato (CA), Italy. matteo.ceccarelli@dsf.unica.it.
  • Bodrenko I; Department of Physics, University of Cagliari, Cittadella universitaria di Monserrato, S.P.8 - km 0.700, 09042 Monserrato (CA), Italy. matteo.ceccarelli@dsf.unica.it.
  • Scorciapino MA; Department of Biomedical Sciences, Biochemistry Unit, University of Cagliari, Cittadella universitaria di Monserrato, S.P.8 - km 0.700, 09042 Monserrato (CA), Italy.
  • Ceccarelli M; Department of Physics, University of Cagliari, Cittadella universitaria di Monserrato, S.P.8 - km 0.700, 09042 Monserrato (CA), Italy. matteo.ceccarelli@dsf.unica.it.
Phys Chem Chem Phys ; 18(13): 8855-64, 2016 Apr 07.
Article em En | MEDLINE | ID: mdl-26931352
ABSTRACT
Multi-drug resistance bacteria are a challenging problem of contemporary medicine. This is particularly critical for Gram-negative bacteria, where antibiotics are hindered by the outer membrane to reach internal targets. Here more polar antibiotics make use of nanometric water-filled channels to permeate inside. We present in this work a computational all-atom approach, using water as a probe, for the calculation of the macroscopic electric field inside water-filled channels. The method allows one to compare not only different systems but also the same system under different conditions, such as pH and ion concentration. This provides a detailed picture of electrostatics in biological nanopores shedding more light on how the charged residues of proteins determine the electric field inside, and also how medium can tune it. These details are central to unveil the filtering mechanism behind the permeation of small polar molecules through nanometric water-filled channels.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Eletricidade / Nanoporos Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Eletricidade / Nanoporos Idioma: En Ano de publicação: 2016 Tipo de documento: Article