1H and 13C hyperfine coupling constants of the tryptophanyl cation radical in aqueous solution from microsecond time-resolved CIDNP.

Kiryutin AS, Morozova OB, Kuhn LT, Yurkovskaya AV, Hore PJ

Relative values of the 1H and 13C isotropic hyperfine couplings in the cationic oxidized tryptophan radical TrpH*+ in aqueous solution are determined. The data are obtained from the photo-CIDNP (chemically induced dynamic nuclear polarization) enhancements observed in the microsecond time-resolved NMR spectra of the diamagnetic products of photochemical reactions in which TrpH*+ is a transient intermediate. The method is validated using the tyrosyl neutral radical Tyr*, whose 1H and 13C hyperfine couplings have previously been determined by electron paramagnetic resonance spectroscopy. Good agreement is found with hyperfine coupling constants for TrpH*+ calculated using density functional theory methods but only if water molecules are explicitly included in the calculation.

Keywords:

Carbon Isotopes

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Cations

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Crystallography, X-Ray

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Electric Conductivity

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Free Radicals

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Magnetic Resonance Spectroscopy

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Protons

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Solutions

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Time Factors

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Tryptophan

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Viscosity

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Water