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Heme a synthase in bacteria depends on one pair of cysteinyls for activity.

Author

Summary, in English

Heme A is a prosthetic group unique for cytochrome a-type respiratory oxidases in mammals, plants and many microorganisms. The poorly understood integral membrane protein heme A synthase catalyzes the synthesis of heme A from heme O. In bacteria, but not in mitochondria, this enzyme contains one or two pairs of cysteine residues that are present in predicted hydrophilic polypeptide loops on the extracytoplasmic side of the membrane. We used heme A synthase from the eubacterium Bacillus subtilis and the hyperthermophilic archeon Aeropyrum pernix to investigate the functional role of these cysteine residues. Results with B. subtilis amino acid substituted proteins indicated the pair of cysteine residues in the loop connecting transmembrane segments I and II as being essential for catalysis but not required for binding of the enzyme substrate, heme O. Experiments with isolated A. pernix and B. subtilis heme A synthase demonstrated that a disulfide bond can form between the cysteine residues in the same loop and also between loops showing close proximity of the two loops in the folded enzyme protein. Based on the findings we propose a classification scheme for the four discrete types of heme A synthase found so far in different organisms and propose that essential cysteinyls mediate transfer of reducing equivalents required for the oxygen-dependent catalysis of heme A synthesis from heme O.

Publishing year

2016

Language

English

Pages

160-168

Publication/Series

Biochimica et Biophysica Acta

Volume

1857

Issue

2

Document type

Journal article

Publisher

Elsevier

Topic

  • Microbiology

Keywords

  • Heme biosynthesis
  • Cytochrome a
  • Bacillus subtilis
  • Aeropyrum pernix
  • CtaA
  • COX15
  • Protein disulfide

Status

Published

ISBN/ISSN/Other

  • ISSN: 0006-3002