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Site-directed mutagenesis of cysteine residues alters oxidative stability of fetal hemoglobin.
Kettisen, Karin; Strader, Michael Brad; Wood, Francine; Alayash, Abdu I; Bülow, Leif.
Affiliation
  • Kettisen K; Pure and Applied Biochemistry, Department of Chemistry, Lund University, Lund 22362, Sweden.
  • Strader MB; Laboratory of Biochemistry and Vascular Biology, Center for Biologics Evaluation and Research, Food and Drug Administration, Silver Spring, MD 20993, USA.
  • Wood F; Laboratory of Biochemistry and Vascular Biology, Center for Biologics Evaluation and Research, Food and Drug Administration, Silver Spring, MD 20993, USA.
  • Alayash AI; Laboratory of Biochemistry and Vascular Biology, Center for Biologics Evaluation and Research, Food and Drug Administration, Silver Spring, MD 20993, USA.
  • Bülow L; Pure and Applied Biochemistry, Department of Chemistry, Lund University, Lund 22362, Sweden. Electronic address: leif.bulow@tbiokem.lth.se.
Redox Biol ; 19: 218-225, 2018 10.
Article in En | MEDLINE | ID: mdl-30193183
ABSTRACT
Redox active cysteine residues including ßCys93 are part of hemoglobin's "oxidation hotspot". Irreversible oxidation of ßCys93 ultimately leads to the collapse of the hemoglobin structure and release of heme. Human fetal hemoglobin (HbF), similarly to the adult hemoglobin (HbA), carries redox active γCys93 in the vicinity of the heme pocket. Site-directed mutagenesis has been used in this study to examine the impact of removal and/or addition of cysteine residues in HbF. The redox activities of the recombinant mutants were examined by determining the spontaneous autoxidation rate, the hydrogen peroxide induced ferric to ferryl oxidation rate, and irreversible oxidation of cysteine by quantitative mass spectrometry. We found that substitution of γCys93Ala resulted in oxidative instability characterized by increased oxidation rates. Moreover, the addition of a cysteine residue at α19 on the exposed surface of the α-chain altered the regular electron transfer pathway within the protein by forming an alternative oxidative site. This may also create an accessible site for di-sulfide bonding between Hb subunits. Engineering of cysteine residues at suitable locations may be useful as a tool for managing oxidation in a protein, and for Hb, a way to stave off oxidation reactions resulting in a protein structural collapse.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Fetal Hemoglobin / Cysteine Limits: Humans Language: En Journal: Redox Biol Year: 2018 Document type: Article Affiliation country: Sweden

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Fetal Hemoglobin / Cysteine Limits: Humans Language: En Journal: Redox Biol Year: 2018 Document type: Article Affiliation country: Sweden