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Dissimilatory sulfite reductase (desulfoviridin) of the taurine-degrading, non-sulfate-reducing bacterium Bilophila wadsworthia RZATAU contains a fused DsrB-DsrD subunit

Dissimilatory sulfite reductase (desulfoviridin) of the taurine-degrading, non-sulfate-reducing bacterium Bilophila wadsworthia RZATAU contains a fused DsrB-DsrD subunit

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LAUE, Heike, Michael FRIEDRICH, Jürgen RUFF, Alasdair M. COOK, 2001. Dissimilatory sulfite reductase (desulfoviridin) of the taurine-degrading, non-sulfate-reducing bacterium Bilophila wadsworthia RZATAU contains a fused DsrB-DsrD subunit. In: Journal of Bacteriology. 183(5), pp. 1727-1733. ISSN 0021-9193. eISSN 1098-5530

@article{Laue2001Dissi-8628, title={Dissimilatory sulfite reductase (desulfoviridin) of the taurine-degrading, non-sulfate-reducing bacterium Bilophila wadsworthia RZATAU contains a fused DsrB-DsrD subunit}, year={2001}, number={5}, volume={183}, issn={0021-9193}, journal={Journal of Bacteriology}, pages={1727--1733}, author={Laue, Heike and Friedrich, Michael and Ruff, Jürgen and Cook, Alasdair M.} }

Friedrich, Michael Dissimilatory sulfite reductase (desulfoviridin) of the taurine-degrading, non-sulfate-reducing bacterium Bilophila wadsworthia RZATAU contains a fused DsrB-DsrD subunit Laue, Heike A dissimilatory sulfite reductase (DSR) was purified from the anaerobic, taurine-degrading bacterium Bilophila wadsworthia RZATAU to apparent homogeneity. The enzyme is involved in energy conservation by reducing sulfite, which is formed during the degradation of taurine as an electron acceptor, to sulfide. According to its UV-visible absorption spectrum with maxima at 392, 410, 583, and 630 nm, the enzyme belongs to the desulfoviridin type of DSRs. The sulfite reductase was isolated as an alpha(2)beta(2)gamma(n) (n > or = 2) multimer with a native size of 285 kDa as determined by gel filtration. We have sequenced the genes encoding the alpha and beta subunits (dsrA and dsrB, respectively), which probably constitute one operon. dsrA and dsrB encode polypeptides of 49 (alpha) and 54 kDa (beta) which show significant similarities to the homologous subunits of other DSRs. The dsrB gene product of B. wadsworthia is apparently a fusion protein of dsrB and dsrD. This indicates a possible functional role of DsrD in DSR function because of its presence as a fusion protein as an integral part of the DSR holoenzyme in B. wadsworthia. A phylogenetic analysis using the available Dsr sequences revealed that B. wadsworthia grouped with its closest 16S rDNA relative Desulfovibrio desulfuricans Essex 6. Cook, Alasdair M. 2001 application/pdf Laue, Heike First publ. in: Journal of Bacteriology 183 (2001), 5, pp. 1727-1733 Ruff, Jürgen Friedrich, Michael deposit-license Ruff, Jürgen eng 2011-03-24T17:45:14Z Cook, Alasdair M. 2011-03-24T17:45:14Z

Dateiabrufe seit 01.10.2014 (Informationen über die Zugriffsstatistik)

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