Mechanism of nitrite reduction at T2Cu centers: Electronic structure calculations of catalysis by copper nitrite reductase and by synthetic model compounds

Mahesh Sundararajan, Ian H. Hillier, Neil A. Burton

    Research output: Contribution to journalArticlepeer-review

    Abstract

    The mechanism of nitrite reduction at the Cu(II) center of both copper nitrite reductase and a number of corresponding synthetic models has been investigated by using both QM/MM and cluster calculations employing density functional theory methods. The mechanism in both cases is found to be very similar. Initially nitrite is bound in a bidentate fashion to the Cu(II) center via the two oxygen atoms. Upon reduction of the copper center, the two possible coordination modes of the protonated nitrite, by either nitrogen or a single oxygen atom, are close in energy, with nitrogen coordination probably preferred. Further protonation of this species leads to N-O bond cleavage, and an electron transfer from the Cu(I) center to the N-O+ ligand, resulting in loss of NO and regeneration of the resting state of the enzyme having a bound water molecule. © 2007 American Chemical Society.
    Original languageEnglish
    Pages (from-to)5511-5517
    Number of pages6
    JournalJournal of Physical Chemistry B
    Volume111
    Issue number19
    DOIs
    Publication statusPublished - 17 May 2007

    Keywords

    • ATOMIC-RESOLUTION STRUCTURES
    • X-RAY-STRUCTURE
    • ALCALIGENES-XYLOSOXIDANS
    • SUBSTRATE-BINDING
    • ACTIVE-SITE
    • CRYSTAL-STRUCTURES
    • PROVIDE INSIGHT
    • TYPE-2 COPPER
    • SPECTROSCOPIC
    • CHARACTERIZATION
    • ACHROMOBACTER-CYCLOCLASTES

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