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Direct probe of iron vibrations elucidates NO activation of heme proteins.


ABSTRACT: We use nuclear resonance vibrational spectroscopy (NRVS) to identify the Fe-NO stretching frequency in the NO adduct of myoglobin (MbNO) and in the related six-coordinate porphyrin Fe(TPP)(1-MeIm)(NO). Frequency shifts observed in MbNO Raman spectra upon isotopic substitution of Fe or the nitrosyl nitrogen confirm and extend the NRVS results. In contrast with previous assignments, the Fe-NO frequency of these six-coordinate complexes lies 70-100 cm-1 lower than in the analogous five-coordinate nitrosyl complexes, indicating a significant weakening of the Fe-NO bond in the presence of a trans imidazole ligand. This result supports proposed mechanisms for NO activation of heme proteins and underscores the value of NRVS as a direct probe of metal reactivity in complex biomolecules.

SUBMITTER: Zeng W 

PROVIDER: S-EPMC1502376 | biostudies-literature | 2005 Aug

REPOSITORIES: biostudies-literature

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Direct probe of iron vibrations elucidates NO activation of heme proteins.

Zeng Weiqiao W   Silvernail Nathan J NJ   Wharton David C DC   Georgiev Georgi Y GY   Leu Bogdan M BM   Scheidt W Robert WR   Zhao Jiyong J   Sturhahn Wolfgang W   Alp E Ercan EE   Sage J Timothy JT  

Journal of the American Chemical Society 20050801 32


We use nuclear resonance vibrational spectroscopy (NRVS) to identify the Fe-NO stretching frequency in the NO adduct of myoglobin (MbNO) and in the related six-coordinate porphyrin Fe(TPP)(1-MeIm)(NO). Frequency shifts observed in MbNO Raman spectra upon isotopic substitution of Fe or the nitrosyl nitrogen confirm and extend the NRVS results. In contrast with previous assignments, the Fe-NO frequency of these six-coordinate complexes lies 70-100 cm-1 lower than in the analogous five-coordinate n  ...[more]

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