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57Fe and 1H electron-nuclear double resonance of three doubly reduced states Escherichia coli sulfite reductase.

Publication ,  Journal Article
Cline, JF; Janick, PA; Siegel, LM; Hoffman, BM
Published in: Biochemistry
August 12, 1986

We have employed electron-nuclear double resonance (ENDOR) spectroscopy to study the 57Fe hyperfine interactions in the bridged-siroheme [4Fe-4S] cluster that forms the catalytically active center of the two-electron-reduced hemoprotein subunit of Escherichia coli NADPH-sulfite reductase (SiR2-). Previous electron paramagnetic resonance (EPR) and Mössbauer studies have shown that this enzyme oxidation state can exist in three distinct spectroscopic forms: (1) a "g = 2.29" EPR species that predominates in unligated SiR2-, in which the siroheme Fe2+ is believed to be in an S = 1 state; (2) a "g = 4.88" type of EPR species that predominates in SiR2- in the presence of small amounts of guanidinium sulfate, in which the siroheme Fe2+ is in an S = 2 state; and (3) a classical "g = 1.94" type of EPR species that is seen in SiR2- ligated with CO, in which the siroheme Fe2+ is in an S = 0 state. In all three species, the cluster is in the [4Fe-4S]1+ state, and two distinct types of Fe site are seen in Mössbauer spectroscopy. ENDOR studies confirm the Mössbauer assignments for the cluster 57Fe in the g = 1.94 state, with A values of 37, 37, and 32 MHz for site I and ca. 19 MHz for site II. The hyperfine interactions are not too different on the g = 2.29 state, with site I Fe showing more anisotropic A values of 32, 24, and 20 MHz (site II was not detected).(ABSTRACT TRUNCATED AT 250 WORDS)

Duke Scholars

Published In

Biochemistry

DOI

ISSN

0006-2960

Publication Date

August 12, 1986

Volume

25

Issue

16

Start / End Page

4647 / 4654

Location

United States

Related Subject Headings

  • Sulfite Reductase (NADPH)
  • Oxidoreductases Acting on Sulfur Group Donors
  • Oxidoreductases
  • Oxidation-Reduction
  • Magnetic Resonance Spectroscopy
  • Kinetics
  • Iron
  • Hydrogen
  • Escherichia coli
  • Electron Spin Resonance Spectroscopy
 

Citation

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Cline, J. F., Janick, P. A., Siegel, L. M., & Hoffman, B. M. (1986). 57Fe and 1H electron-nuclear double resonance of three doubly reduced states Escherichia coli sulfite reductase. Biochemistry, 25(16), 4647–4654. https://doi.org/10.1021/bi00364a029
Cline, J. F., P. A. Janick, L. M. Siegel, and B. M. Hoffman. “57Fe and 1H electron-nuclear double resonance of three doubly reduced states Escherichia coli sulfite reductase.Biochemistry 25, no. 16 (August 12, 1986): 4647–54. https://doi.org/10.1021/bi00364a029.
Cline JF, Janick PA, Siegel LM, Hoffman BM. 57Fe and 1H electron-nuclear double resonance of three doubly reduced states Escherichia coli sulfite reductase. Biochemistry. 1986 Aug 12;25(16):4647–54.
Cline, J. F., et al. “57Fe and 1H electron-nuclear double resonance of three doubly reduced states Escherichia coli sulfite reductase.Biochemistry, vol. 25, no. 16, Aug. 1986, pp. 4647–54. Pubmed, doi:10.1021/bi00364a029.
Cline JF, Janick PA, Siegel LM, Hoffman BM. 57Fe and 1H electron-nuclear double resonance of three doubly reduced states Escherichia coli sulfite reductase. Biochemistry. 1986 Aug 12;25(16):4647–4654.
Journal cover image

Published In

Biochemistry

DOI

ISSN

0006-2960

Publication Date

August 12, 1986

Volume

25

Issue

16

Start / End Page

4647 / 4654

Location

United States

Related Subject Headings

  • Sulfite Reductase (NADPH)
  • Oxidoreductases Acting on Sulfur Group Donors
  • Oxidoreductases
  • Oxidation-Reduction
  • Magnetic Resonance Spectroscopy
  • Kinetics
  • Iron
  • Hydrogen
  • Escherichia coli
  • Electron Spin Resonance Spectroscopy