Literature DB >> 22404040

A structural element that facilitates proton-coupled electron transfer in oxalate decarboxylase.

Benjamin T Saylor1, Laurie A Reinhardt, Zhibing Lu, Mithila S Shukla, Linda Nguyen, W Wallace Cleland, Alexander Angerhofer, Karen N Allen, Nigel G J Richards.   

Abstract

The conformational properties of an active-site loop segment, defined by residues Ser(161)-Glu(162)-Asn(163)-Ser(164), have been shown to be important for modulating the intrinsic reactivity of Mn(II) in the active site of Bacillus subtilis oxalate decarboxylase. We now detail the functional and structural consequences of removing a conserved Arg/Thr hydrogen-bonding interaction by site-specific mutagenesis. Hence, substitution of Thr-165 by a valine residue gives an OxDC variant (T165V) that exhibits impaired catalytic activity. Heavy-atom isotope effect measurements, in combination with the X-ray crystal structure of the T165V OxDC variant, demonstrate that the conserved Arg/Thr hydrogen bond is important for correctly locating the side chain of Glu-162, which mediates a proton-coupled electron transfer (PCET) step prior to decarboxylation in the catalytically competent form of OxDC. In addition, we show that the T165V OxDC variant exhibits a lower level of oxalate consumption per dioxygen molecule, consistent with the predictions of recent spin-trapping experiments [Imaram et al. (2011) Free Radicals Biol. Med. 50, 1009-1015]. This finding implies that dioxygen might participate as a reversible electron sink in two putative PCET steps and is not merely used to generate a protein-based radical or oxidized metal center.

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Year:  2012        PMID: 22404040      PMCID: PMC3319475          DOI: 10.1021/bi300001q

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  33 in total

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  8 in total

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3.  Observation of superoxide production during catalysis of Bacillus subtilis oxalate decarboxylase at pH 4.

Authors:  Umar T Twahir; Corey N Stedwell; Cory T Lee; Nigel G J Richards; Nicolas C Polfer; Alexander Angerhofer
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4.  Formation of Hexacoordinate Mn(III) in Bacillus subtilis Oxalate Decarboxylase Requires Catalytic Turnover.

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Journal:  Biochemistry       Date:  2016-01-11       Impact factor: 3.162

5.  Assigning the EPR fine structure parameters of the Mn(II) centers in Bacillus subtilis oxalate decarboxylase by site-directed mutagenesis and DFT/MM calculations.

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6.  Substrate Binding Mode and Molecular Basis of a Specificity Switch in Oxalate Decarboxylase.

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Journal:  Biochemistry       Date:  2016-04-04       Impact factor: 3.162

7.  Immobilization of Bacillus subtilis oxalate decarboxylase on a Zn-IMAC resin.

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8.  Properties of Intermediates in the Catalytic Cycle of Oxalate Oxidoreductase and Its Suicide Inactivation by Pyruvate.

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  8 in total

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