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The respiratory burst oxidase of human neutrophils. Further studies of the purified enzyme

  • G. A. Glass
  • , D. M. DeLisle
  • , P. DeTogni
  • , T. G. Gabig
  • , B. H. Magee
  • , M. Markert
  • , B. M. Babior
  • Tufts Medical Center

Research output: Contribution to journalArticlepeer-review

76 Scopus citations

Abstract

A superoxide-forming oxidase from activated human neutrophil membranes was solubilized by two slightly different methods, then purified by 'dye-affinity' chromatography. Kinetic studies of the purified preparations gave V(max) values of 5-10 μmol of O2-/min/mg of protein, and K(m) values for NADH and NADPH that were in reasonable agreement with values determined previously using particulate and crude solubilized preparations of the respiratory burst oxidase. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis showed prominent bands at 67, 48, and 32 kDa together with some minor contaminants, whereas gel electrophoresis under non-denaturing conditions gave a single major band that when eluted and re-electrophoresed in the presence of sodium dodecyl sulfate showed bands at 67, 48, 32 kDa. We believe that all three bands represent oxidase components. The flavin content of the purified enzyme was 20.4 ± 2.0 S.E. pmol of FAD/μg of protein, whereas heme averaged 0.1 ± 0.02 pmol/μg and ubiquinone could not be detected. Assuming that the enzyme is composed of one 67-kDa subunit, one 48-kDa subunit, and one 32-kDa subunit (i.e. that its molecular mass is ~150 kDa), it can be calculated to have a turnover number of 700-1500 min-1, in agreement with a value reported previously for oxidase in a particulate O2--forming system (Cross, A.R., Parkinson, J.F., and Jones, O.T.G. (1985) Biochem. J. 226, 881-884), and to contain the following quantities of redox carriers (mol/mol): FAD, 3.0; heme, 0.015; ubiquinone, <0.06. It remains to be determined whether this preparation represents the complete respiratory burst oxidase or is only the pyridine nucleotide dehydrogenating component of a more complex enzyme.

Original languageEnglish
Pages (from-to)13247-13251
Number of pages5
JournalJournal of Biological Chemistry
Volume261
Issue number28
StatePublished - 1986

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