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Reduction-cleavable desferrioxamine B pulldown system enriches Ni(ii)-superoxide dismutase from a Streptomyces proteome.
Ni, Jenny; Wood, James L; White, Melanie Y; Lihi, Norbert; Markham, Todd E; Wang, Joseph; Chivers, Peter T; Codd, Rachel.
Afiliação
  • Ni J; School of Medical Sciences, The University of Sydney New South Wales 2006 Australia rachel.codd@sydney.edu.au.
  • Wood JL; School of Medical Sciences, The University of Sydney New South Wales 2006 Australia rachel.codd@sydney.edu.au.
  • White MY; School of Medical Sciences, The University of Sydney New South Wales 2006 Australia rachel.codd@sydney.edu.au.
  • Lihi N; Charles Perkins Centre, The University of Sydney New South Wales 2006 Australia.
  • Markham TE; ELKH-DE Mechanisms of Complex Homogeneous and Heterogeneous Chemical Reactions Research Group, Department of Inorganic and Analytical Chemistry, University of Debrecen Debrecen H-4032 Hungary.
  • Wang J; School of Medical Sciences, The University of Sydney New South Wales 2006 Australia rachel.codd@sydney.edu.au.
  • Chivers PT; School of Medical Sciences, The University of Sydney New South Wales 2006 Australia rachel.codd@sydney.edu.au.
  • Codd R; Department of Chemistry, Durham University Durham DH1 3LE UK.
RSC Chem Biol ; 4(12): 1064-1072, 2023 Nov 29.
Article em En | MEDLINE | ID: mdl-38033724
ABSTRACT
Two resins with the hydroxamic acid siderophore desferrioxamine B (DFOB) immobilised as a free ligand or its Fe(iii) complex were prepared to screen the Streptomyces pilosus proteome for proteins involved in siderophore-mediated Fe(iii) uptake. The resin design included a disulfide bond to enable the release of bound proteins under mild reducing conditions. Proteomics analysis of the bound fractions did not identify proteins associated with siderophore-mediated Fe(iii) uptake, but identified nickel superoxide dismutase (NiSOD), which was enriched on the apo-DFOB-resin but not the Fe(iii)-DFOB-resin or the control resin. While DFOB is unable to sequester Fe(iii) from sites deeply buried in metalloproteins, the coordinatively unsaturated Ni(ii) ion in NiSOD is present in a surface-exposed loop region at the N-terminus, which might enable partial chelation. The results were consistent with the notion that the apo-DFOB-resin formed a ternary complex with NiSOD, which was not possible for either the coordinatively saturated Fe(iii)-DFOB-resin or the non-coordinating control resin systems. In support, ESI-TOF-MS measurements from a solution of a model Ni(ii)-SOD peptide and DFOB showed signals that correlated with a ternary Ni(ii)-SOD peptide-DFOB complex. Although any biological implications of a DFOB-NiSOD complex are unclear, the work shows that the metal coordination properties of siderophores might influence an array of metal-dependent biological processes beyond those established in iron uptake.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: RSC Chem Biol Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: RSC Chem Biol Ano de publicação: 2023 Tipo de documento: Article