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Electrochemical reduction of ferrous alpha-verdoheme in complex with heme oxygenase-1.

Electrochemical reduction of ferrous alpha-verdoheme in complex with heme oxygenase-1. Research Abstract Details 

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  • Electrochemical reduction of ferrous alpha-verdoheme in complex with heme oxygenase-1. Abstract Text:

    hideaki satoHideaki Sato,yuichiro higashimotoYuichiro Higashimoto,hiroshi sakamotoHiroshi Sakamoto,masakazu sugishimaMasakazu Sugishima,kenichi takahashiKenichi Takahashi,graham palmerGraham Palmer,masato noguchiMasato Noguchi,hideaki satoHideaki Sato,yuichiro higashimotoYuichiro Higashimoto,hiroshi sakamotoHiroshi Sakamoto,masakazu sugishimaMasakazu Sugishima,kenichi takahashiKenichi Takahashi,graham palmerGraham Palmer,masato noguchiMasato Noguchi,

    The heme oxygenase (HO) reaction consists of three successive oxygenation reactions, i.e. heme to alpha-hydroxyheme, alpha-hydroxyheme to verdoheme, and verdoheme to biliverdin-iron chelate. Of these, the least understood step is the conversion of verdoheme to biliverdin-iron chelate. For the cleavage of the oxaporphyrin ring of ferrous verdoheme, involvement of a verdoheme pi-neutral radical has been proposed. To probe this hypothetical mechanism in the HO reaction, we performed electrochemical reduction of ferrous verdoheme complexed with rat HO-1 under anaerobic conditions. On the basis of the electrochemical spectral changes, the midpoint potential for the one-electron reduction of the oxaporphyrin ring of ferrous verdoheme was found to be -0.47+/-0.01 V vs the normal hydrogen electrode (NHE). Because this potential is far lower than those of both flavins of NADPH-cytochrome P450 reductase, and of NADPH, it is concluded that the one-electron reduction of the oxaporphyrin ring of ferrous verdoheme is unlikely to occur and that the formation of the pi-neutral radical cannot be the initial step in the degradation of verdoheme by HO. Rather, it appears more reasonable to consider an alternative mechanism in which binding of O(2) to the ferrous iron of verdoheme is the first step in the degradation of verdoheme.

    Electrochemical reduction of ferrous alpha-verdoheme in complex with heme oxygenase-1. Publishing Authors By Initials

    h satoH Sato,y higashimotoY Higashimoto,h sakamotoH Sakamoto,m sugishimaM Sugishima,k takahashiK Takahashi,g palmerG Palmer,m noguchiM Noguchi,h satoH Sato,y higashimotoY Higashimoto,h sakamotoH Sakamoto,m sugishimaM Sugishima,k takahashiK Takahashi,g palmerG Palmer,m noguchiM Noguchi,

    For similar abstracts research abstracts see: abstracts research

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    Electrochemical reduction of ferrous alpha-verdoheme in complex with heme oxygenase-1. Journal Published:

    PUBLICATION TYPE: Research Support, Non-U.S. Gov

    Journal: Journal of inorganic biochemistry

    VOLUME: 101

    Page Numbers: 1394-9

    Journal Abbreviation: J. Inorg. Biochem.

    ISSN: 0162-0134

    DAY: 12

    MONTH: 06

    YEAR: 2007

    Electrochemical reduction of ferrous alpha-verdoheme in complex with heme oxygenase-1. Information

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    LANGUAGE: eng

    NlmUniqueID: 7905788

    Electrochemical reduction of ferrous alpha-verdoheme in complex with heme oxygenase-1. Keywords Mesh Terms:

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    Chemical & Substance for Abstract: Electrochemical reduction of ferrous alpha-verdoheme in complex with heme oxygenase-1. Information

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    Grant and Affiliation Information for Electrochemical reduction of ferrous alpha-verdoheme in complex with heme oxygenase-1.

    AFFILIATION: Department of Medical Biochemistry, Kurume University School of Medicine, 67 Asahi-machi, Kurume 830-0011, Japan.

    Country: United States

    United States Research PublicationUnited States Research Publication

    AGENCY: United States NIGMS

    GRANT: GM080575

    ACRONYM: GM

    MEDLINETA: J Inorg Biochem

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