4.7 Article

Pulsed Electron Paramagnetic Resonance Spectroscopy of 33S-Labeled Molybdenum Cofactor in Catalytically Active Bioengineered Sulfite Oxidase

Journal

INORGANIC CHEMISTRY
Volume 53, Issue 2, Pages 961-971

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ic4023954

Keywords

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Funding

  1. NIH [GM-37773, S10RR020959, S10RR026416-01]
  2. Max Planck Society
  3. German Science Foundation (DFG)
  4. Fonds der Chemischen Industrie
  5. NSF [DBI-0139459, DBI-9604939, BIR-9224431]

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Molybdenum enzymes contain at. least one pyranopterin dithiolate (molybdopterin, MPT) moiety that coordinates Mo through two dithiolate (dithiolene) sulfur atoms. For sulfite oxidase (SO), hyperfine interactions (hfi) and nuclear quadrupole interactions (nqi) of magnetic nuclei (I not equal 0) near the Mo(V) (d(1)) center have been measured using high-resolution pulsed electron paramagnetic resonance (EPR) methods and interpreted with the help of density functional theory (DFT) calculations. These have provided important insights about the active site structure and the reaction mechanism of the enzyme. However, it has not been possible to use EPR to probe the dithiolene sulfurs directly since naturally abundant S-32 has no nuclear spin (I = 0). Here we describe direct incorporation of S-33 (I = 3/2), the only stable magnetic sulfur isotope, into MPT using controlled in vitro synthesis with purified proteins. The electron spin echo envelope modulation (ESEEM) spectra from S-33-labeled MPT in this catalytically active SO variant are dominated by the interdoublet transition arising from the strong nuclear quadrupole interaction, as also occurs for the S-33-labeled exchangeable equatorial sulfite ligand [Klein, E. L., et al. Inorg. Chem. 2012, 51, 14081418]. The estimated experimental hfi and nqi parameters for S-33 (a(iso) = 3 MHz and e(2)Qq/h = 25 MHz) are in good agreement with those predicted by DFT. In addition, the DFT calculations show that the two S-33 atoms are indistinguishable by EPR and reveal a strong intermixing between their out-of-plane p(z) orbitals and the d(xy) orbital of Mo(V).

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