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Identification of Specific Effect of Chloride on the Spectral Properties and Structural Stability of Multiple Extracellular Glutamic Acid Mutants of Bacteriorhodopsin.
Lazarova, Tzvetana; Mlynarczyk, Krzysztof; Querol, Enric; Tenchov, Boris; Filipek, Slawomir; Padrós, Esteve.
Afiliação
  • Lazarova T; Unitat de Biofísica, Departament de Bioquímica i de Biologia Molecular, Facultat de Medicina, and Centre d'Estudis en Biofísica, Universitat Autònoma de Barcelona, Barcelona, Spain.
  • Mlynarczyk K; Faculty of Chemistry, Biological and Chemical Research Centre, University of Warsaw, Warsaw, Poland.
  • Querol E; Institut de Biomedicina i Biotecnologia, Universitat Autònoma de Barcelona, Barcelona, Spain.
  • Tenchov B; Department of Medical Physics and Biophysics, Faculty of Medicine, Medical University - Sofia, Sofia, Bulgaria.
  • Filipek S; Faculty of Chemistry, Biological and Chemical Research Centre, University of Warsaw, Warsaw, Poland.
  • Padrós E; Unitat de Biofísica, Departament de Bioquímica i de Biologia Molecular, Facultat de Medicina, and Centre d'Estudis en Biofísica, Universitat Autònoma de Barcelona, Barcelona, Spain.
PLoS One ; 11(9): e0162952, 2016.
Article em En | MEDLINE | ID: mdl-27657718
ABSTRACT
In the present work we combine spectroscopic, DSC and computational approaches to examine the multiple extracellular Glu mutants E204Q/E194Q, E204Q/E194Q/E9Q and E204Q/E194Q/E9Q/E74Q of bacteriorhodopsin by varying solvent ionic strength and composition. Absorption spectroscopy data reveal that the absorption maxima of multiple EC Glu mutants can be tuned by the chloride concentration in the solution. Visible Circular dichroism spectra imply that the specific binding of Cl- can modulate weakened exciton chromophore coupling and reestablish wild type-like bilobe spectral features of the mutants. The DSC data display reappearance of the reversible thermal transition, higher Tm of denaturation and an increase in the enthalpy of unfolding of the mutants in 1 M KCl solutions. Molecular dynamics simulations indicate high affinity binding of Cl- to Arg82 and to Gln204 and Gln194 residues in the mutants. Analysis of the experimental data suggests that simultaneous elimination of the negatively charged side chain of Glu194 and Glu204 is the major cause for mutants' alterations. Specific Cl- binding efficiently coordinates distorted hydrogen bonding interactions of the EC region and reconstitutes the conformation and structure stability of mutated bR in WT-like fashion.

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Diagnostic_studies Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Diagnostic_studies Idioma: En Ano de publicação: 2016 Tipo de documento: Article