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Thiosulfate Transfer Mediated by DsrE/TusA Homologs from Acidothermophilic Sulfur-oxidizing Archaeon Metallosphaera cuprina

Conserved clusters of genes encoding DsrE and TusA homologs occur in many archaeal and bacterial sulfur oxidizers. TusA has a well documented function as a sulfurtransferase in tRNA modification and molybdenum cofactor biosynthesis in Escherichia coli, and DsrE is an active site subunit of the DsrEF...

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Autores principales: Liu, Li-Jun, Stockdreher, Yvonne, Koch, Tobias, Sun, Shu-Tao, Fan, Zheng, Josten, Michaele, Sahl, Hans-Georg, Wang, Qian, Luo, Yuan-Ming, Liu, Shuang-Jiang, Dahl, Christiane, Jiang, Cheng-Ying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4175335/
https://www.ncbi.nlm.nih.gov/pubmed/25122768
http://dx.doi.org/10.1074/jbc.M114.591669
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author Liu, Li-Jun
Stockdreher, Yvonne
Koch, Tobias
Sun, Shu-Tao
Fan, Zheng
Josten, Michaele
Sahl, Hans-Georg
Wang, Qian
Luo, Yuan-Ming
Liu, Shuang-Jiang
Dahl, Christiane
Jiang, Cheng-Ying
author_facet Liu, Li-Jun
Stockdreher, Yvonne
Koch, Tobias
Sun, Shu-Tao
Fan, Zheng
Josten, Michaele
Sahl, Hans-Georg
Wang, Qian
Luo, Yuan-Ming
Liu, Shuang-Jiang
Dahl, Christiane
Jiang, Cheng-Ying
author_sort Liu, Li-Jun
collection PubMed
description Conserved clusters of genes encoding DsrE and TusA homologs occur in many archaeal and bacterial sulfur oxidizers. TusA has a well documented function as a sulfurtransferase in tRNA modification and molybdenum cofactor biosynthesis in Escherichia coli, and DsrE is an active site subunit of the DsrEFH complex that is essential for sulfur trafficking in the phototrophic sulfur-oxidizing Allochromatium vinosum. In the acidothermophilic sulfur (S(0))- and tetrathionate (S(4)O(6)(2−))-oxidizing Metallosphaera cuprina Ar-4, a dsrE3A-dsrE2B-tusA arrangement is situated immediately between genes encoding dihydrolipoamide dehydrogenase and a heterodisulfide reductase-like complex. In this study, the biochemical features and sulfur transferring abilities of the DsrE2B, DsrE3A, and TusA proteins were investigated. DsrE3A and TusA proved to react with tetrathionate but not with NaSH, glutathione persulfide, polysulfide, thiosulfate, or sulfite. The products were identified as protein-Cys-S-thiosulfonates. DsrE3A was also able to cleave the thiosulfate group from TusA-Cys(18)-S-thiosulfonate. DsrE2B did not react with any of the sulfur compounds tested. DsrE3A and TusA interacted physically with each other and formed a heterocomplex. The cysteine residue (Cys(18)) of TusA is crucial for this interaction. The single cysteine mutants DsrE3A-C(93)S and DsrE3A-C(101)S retained the ability to transfer the thiosulfonate group to TusA. TusA-C(18)S neither reacted with tetrathionate nor was it loaded with thiosulfate with DsrE3A-Cys-S-thiosulfonate as the donor. The transfer of thiosulfate, mediated by a DsrE-like protein and TusA, is unprecedented not only in M. cuprina but also in other sulfur-oxidizing prokaryotes. The results of this study provide new knowledge on oxidative microbial sulfur metabolism.
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spelling pubmed-41753352014-09-26 Thiosulfate Transfer Mediated by DsrE/TusA Homologs from Acidothermophilic Sulfur-oxidizing Archaeon Metallosphaera cuprina Liu, Li-Jun Stockdreher, Yvonne Koch, Tobias Sun, Shu-Tao Fan, Zheng Josten, Michaele Sahl, Hans-Georg Wang, Qian Luo, Yuan-Ming Liu, Shuang-Jiang Dahl, Christiane Jiang, Cheng-Ying J Biol Chem Microbiology Conserved clusters of genes encoding DsrE and TusA homologs occur in many archaeal and bacterial sulfur oxidizers. TusA has a well documented function as a sulfurtransferase in tRNA modification and molybdenum cofactor biosynthesis in Escherichia coli, and DsrE is an active site subunit of the DsrEFH complex that is essential for sulfur trafficking in the phototrophic sulfur-oxidizing Allochromatium vinosum. In the acidothermophilic sulfur (S(0))- and tetrathionate (S(4)O(6)(2−))-oxidizing Metallosphaera cuprina Ar-4, a dsrE3A-dsrE2B-tusA arrangement is situated immediately between genes encoding dihydrolipoamide dehydrogenase and a heterodisulfide reductase-like complex. In this study, the biochemical features and sulfur transferring abilities of the DsrE2B, DsrE3A, and TusA proteins were investigated. DsrE3A and TusA proved to react with tetrathionate but not with NaSH, glutathione persulfide, polysulfide, thiosulfate, or sulfite. The products were identified as protein-Cys-S-thiosulfonates. DsrE3A was also able to cleave the thiosulfate group from TusA-Cys(18)-S-thiosulfonate. DsrE2B did not react with any of the sulfur compounds tested. DsrE3A and TusA interacted physically with each other and formed a heterocomplex. The cysteine residue (Cys(18)) of TusA is crucial for this interaction. The single cysteine mutants DsrE3A-C(93)S and DsrE3A-C(101)S retained the ability to transfer the thiosulfonate group to TusA. TusA-C(18)S neither reacted with tetrathionate nor was it loaded with thiosulfate with DsrE3A-Cys-S-thiosulfonate as the donor. The transfer of thiosulfate, mediated by a DsrE-like protein and TusA, is unprecedented not only in M. cuprina but also in other sulfur-oxidizing prokaryotes. The results of this study provide new knowledge on oxidative microbial sulfur metabolism. American Society for Biochemistry and Molecular Biology 2014-09-26 2014-08-13 /pmc/articles/PMC4175335/ /pubmed/25122768 http://dx.doi.org/10.1074/jbc.M114.591669 Text en © 2014 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/) applies to Author Choice Articles
spellingShingle Microbiology
Liu, Li-Jun
Stockdreher, Yvonne
Koch, Tobias
Sun, Shu-Tao
Fan, Zheng
Josten, Michaele
Sahl, Hans-Georg
Wang, Qian
Luo, Yuan-Ming
Liu, Shuang-Jiang
Dahl, Christiane
Jiang, Cheng-Ying
Thiosulfate Transfer Mediated by DsrE/TusA Homologs from Acidothermophilic Sulfur-oxidizing Archaeon Metallosphaera cuprina
title Thiosulfate Transfer Mediated by DsrE/TusA Homologs from Acidothermophilic Sulfur-oxidizing Archaeon Metallosphaera cuprina
title_full Thiosulfate Transfer Mediated by DsrE/TusA Homologs from Acidothermophilic Sulfur-oxidizing Archaeon Metallosphaera cuprina
title_fullStr Thiosulfate Transfer Mediated by DsrE/TusA Homologs from Acidothermophilic Sulfur-oxidizing Archaeon Metallosphaera cuprina
title_full_unstemmed Thiosulfate Transfer Mediated by DsrE/TusA Homologs from Acidothermophilic Sulfur-oxidizing Archaeon Metallosphaera cuprina
title_short Thiosulfate Transfer Mediated by DsrE/TusA Homologs from Acidothermophilic Sulfur-oxidizing Archaeon Metallosphaera cuprina
title_sort thiosulfate transfer mediated by dsre/tusa homologs from acidothermophilic sulfur-oxidizing archaeon metallosphaera cuprina
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4175335/
https://www.ncbi.nlm.nih.gov/pubmed/25122768
http://dx.doi.org/10.1074/jbc.M114.591669
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