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Targeted removal of the FA2 site on human albumin prevents fatty acid-mediated inhibition of Zn2+ binding.
Wu, Dongmei; Hierons, Stephen J; Polepalli, Sirilata; Gucwa, Michal; Fritzen, Remi; Markiewicz, Michal; Sabín, Juan; Minor, Wladek; Murzyn, Krzysztof; Blindauer, Claudia A; Stewart, Alan J.
Afiliación
  • Wu D; School of Medicine, University of St. Andrews, St. Andrews, UK.
  • Hierons SJ; School of Medicine, University of St. Andrews, St. Andrews, UK.
  • Polepalli S; Department of Chemistry, University of Warwick, Coventry, UK.
  • Gucwa M; Department of Computational Biophysics and Bioinformatics, Jagiellonian University, Krakow, Poland.
  • Fritzen R; School of Medicine, University of St. Andrews, St. Andrews, UK.
  • Markiewicz M; Department of Computational Biophysics and Bioinformatics, Jagiellonian University, Krakow, Poland.
  • Sabín J; AFFINImeter Scientific Team, Software 4 Science Developments, Santiago de Compostela, Spain; Applied Physics Department, University of Santiago de Compostela, Santiago de Compostela, Spain.
  • Minor W; Department of Molecular Physiology and Biological Physics, University of Virginia School of Medicine, Charlottesville, VA, USA.
  • Murzyn K; Department of Computational Biophysics and Bioinformatics, Jagiellonian University, Krakow, Poland.
  • Blindauer CA; Department of Chemistry, University of Warwick, Coventry, UK. Electronic address: C.Blindauer@warwick.ac.uk.
  • Stewart AJ; School of Medicine, University of St. Andrews, St. Andrews, UK. Electronic address: ajs21@st-andrews.ac.uk.
J Lipid Res ; 65(6): 100560, 2024 Jun.
Article en En | MEDLINE | ID: mdl-38750995
ABSTRACT
Zinc is required for virtually all biological processes. In plasma, Zn2+ is predominantly transported by human serum albumin (HSA), which possesses two Zn2+-binding sites of differing affinities (sites A and B). Fatty acids (FAs) are also transported by HSA, with seven structurally characterized FA-binding sites (named FA1-FA7) known. FA binding inhibits Zn2+-HSA interactions, in a manner that can impact upon hemostasis and cellular zinc uptake, but the degree to which binding at specific FA sites contributes to this inhibition is unclear. Wild-type HSA and H9A, H67A, H247A, and Y150F/R257A/S287A (FA2-KO) mutant albumins were expressed in Pichia pastoris. Isothermal titration calorimetry studies revealed that the Zn2+-binding capacity at the high-affinity Zn2+ site (site A) was reduced in H67A and H247A mutants, with site B less affected. The H9A mutation decreased Zn2+ binding at the lower-affinity site, establishing His9 as a site B ligand. Zn2+ binding to HSA and H9A was compromised by palmitate, consistent with FA binding affecting site A. 13C-NMR experiments confirmed that the FA2-KO mutations prohibited FA binding at site FA2. Zn2+ binding to the FA2-KO mutant was unaffected by myristate, suggesting binding at FA2 is solely responsible for inhibition. Molecular dynamics studies identified the steric obstruction exerted by bound FA in site FA2, which impedes the conformational change from open (FA-loaded) to closed (FA-free) states, required for Zn2+ to bind at site A. The successful targeting of the FA2 site will aid functional studies exploring the interplay between circulating FA levels and plasma Zn2+ speciation in health and disease.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Zinc / Ácidos Grasos / Albúmina Sérica Humana Límite: Humans Idioma: En Revista: J Lipid Res Año: 2024 Tipo del documento: Article País de afiliación: Reino Unido

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Zinc / Ácidos Grasos / Albúmina Sérica Humana Límite: Humans Idioma: En Revista: J Lipid Res Año: 2024 Tipo del documento: Article País de afiliación: Reino Unido
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