4wqd

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== Publication Abstract from PubMed ==
== Publication Abstract from PubMed ==
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The ability to perform the very simple oxidation of two molecules of thiosulfate to tetrathionate is widespread among prokaryotes. Despite the prevalent occurrence of tetrathionate formation and its well documented significance within the sulfur cycle, little is known about the enzymes that catalyze the oxidative condensation of two thiosulfate anions. To fill this gap, the thiosulfate dehydrogenase (TsdA) enzyme from the purple sulfur bacterium Allochromatium vinosum was recombinantly expressed in Escherichia coli, purified and crystallized, and a crystallographic data set was collected. The crystals belonged to the monoclinic space group C2, with unit-cell parameters a = 79.2, b = 69.9, c = 57.9 A, beta = 129.3 degrees , contained one monomer per asymmetric unit and diffracted to a resolution of 1.98 A.
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Although the oxidative condensation of two thiosulfate anions to tetrathionate constitutes a well-documented and significant part of the natural sulfur cycle little is known about the enzymes catalyzing this reaction. In the purple sulfur bacterium Allochromatium vinosum, the reaction is catalyzed by the periplasmic diheme c-type cytochrome thiosulfate dehydrogenase (TsdA). Here, we report the crystal structure of the 'as-isolated' form of A. vinosum TsdA to 1.98 A resolution, and those of several redox states of the enzyme to different resolutions. The protein contains two typical class I c-type cytochrome domains wrapped around two hemes axially coordinated by His-53/Cys-96 and His-164/Lys-208. These domains are very similar suggesting a gene duplication event during evolution. A ligand switch from Lys-208 to Met-209 is observed upon reduction of the enzyme. Cys-96 is an essential residue for catalysis with the specific activity of the enzyme being completely abolished in several TsdA-Cys-96 variants. TsdA-K208N, K208G and M209G variants were catalytically active in thiosulfate oxidation as well as in tetrathionate reduction, pointing to heme 2 as the electron exit point. In this study, we provide spectroscopic and structural evidence that the TsdA reaction cycle involves the transient presence of heme 1 in the high-spin state caused by movement of the Sgamma atom of Cys-96 out of the iron coordination sphere. Based on the presented data, we draw important conclusions about the enzyme and propose a possible reaction mechanism for TsdA.
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Production, crystallization and preliminary crystallographic analysis of Allochromatium vinosum thiosulfate dehydrogenase TsdA, an unusual acidophilic c-type cytochrome.,Brito JA, Gutierres A, Denkmann K, Dahl C, Archer M Acta Crystallogr F Struct Biol Commun. 2014 Oct;70(Pt 10):1424-7. doi:, 10.1107/S2053230X14019384. Epub 2014 Sep 25. PMID:25286955<ref>PMID:25286955</ref>
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Thiosulfate Dehydrogenase (TsdA) from Allochromatium vinosum: Structural and Functional Insights into Thiosulfate Oxidation.,Brito JA, Denkmann K, Pereira IA, Archer M, Dahl C J Biol Chem. 2015 Feb 11. pii: jbc.M114.623397. PMID:25673691<ref>PMID:25673691</ref>
From MEDLINE&reg;/PubMed&reg;, a database of the U.S. National Library of Medicine.<br>
From MEDLINE&reg;/PubMed&reg;, a database of the U.S. National Library of Medicine.<br>

Revision as of 07:52, 25 February 2015

Thiosulfate dehydrogenase (TsdA) from Allochromatium vinosum - K208G mutant

4wqd, resolution 1.22Å

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