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Fakultät für Chemie
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S05 V03 F41
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Universitätsprofessor/in, Umweltmikrobiologie und Biotechnologie
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Gruppe der Professorinnen und Professoren, Prüfungsausschuss B.Sc./M.Sc.-Studiengang Water Science
Aktuelle Veranstaltungen
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WiSe 2025
- Seminar Molekulare Enzymtechnologie und Biochemie
- Seminar Umweltmikrobiologie und Biotechnologie
- Research Practical - Analytics / Microbiology / Technical Engineering
- Praktikum Biochemie
- Einführung in die Grundlagen der Biologie
- Anleitung zum selbständigen wissenschaftlichen Arbeiten
- E3 - Chemie - Einführung in die Grundlagen der Biologie - Cr. 3-3
- Practical Environmental Microbiology
- Disputation Schroeder
Vergangene Veranstaltungen (max. 10)
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SoSe 2025
- Biochemie
- Microbial Biotechnology (optional)
- Microbial Physiology and Biotechnology (optional)
- Practical Environmental Microbiology
- Anleitung zum selbständigen wissenschaftlichen Arbeiten
- Molekularbiologie
- ZIA40138 Molekularbiologie
- Seminar Umweltmikrobiologie und Biotechnologie
- ZJA40105 Grundlagen der Biologie / Biochemie
- MSCA network ARCTECH
Die folgenden Publikationen sind in der Online-Universitätsbibliographie der Universität Duisburg-Essen verzeichnet. Weitere Informationen finden Sie gegebenenfalls auch auf den persönlichen Webseiten der Person.
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An unusual glycerol-3-phosphate dehydrogenase in Sulfolobus acidocaldarius elucidates the diversity of glycerol metabolism across ArchaeaIn: Communications Biology, Jg. 8, 2025, Nr. 1, 539DOI (Open Access)
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Establishment of an efficient one-step enzymatic synthesis of cyclic-2,3-diphosphoglycerateIn: Frontiers in Microbiology, Jg. 16, 2025, 1601972DOI, Online Volltext (Open Access)
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Fructose-1,6-bisphosphatase is involved in heterotrophic growth and glycogen metabolism in cyanobacteriaIn: Journal of Experimental Botany (JEB), 2025, in pressDOI (Open Access)
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5′-untranslated region sequences enhance plasmid-based protein production in Sulfolobus acidocaldariusIn: Frontiers in Microbiology, Jg. 15, 2024, 1443342DOI, Online Volltext (Open Access)
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Environmental activity-based protein profiling for function-driven enzyme discovery from natural communitiesIn: Environmental Microbiomes, Jg. 19, 2024, Nr. 1, 36DOI, Online Volltext (Open Access)
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Structure function analysis of ADP-dependent cyanobacterial phosphofructokinase reveals new phylogenetic grouping in the PFK-A familyIn: The Journal of Biological Chemistry (JBC), Jg. 300, 2024, Nr. 11, 107868DOI, Online Volltext (Open Access)
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Application of the endogenous CRISPR-Cas type I-D system for genetic engineering in the thermoacidophilic archaeon Sulfolobus acidocaldariusIn: Frontiers in Microbiology, Jg. 14, 2023, 1254891DOI (Open Access)
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Structural characterization of a novel cyclic 2,3-diphosphoglycerate synthetase involved in extremolyte production in the archaeon Methanothermus fervidusIn: Frontiers in Microbiology, Jg. 14, 2023, 1267570DOI (Open Access)
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Activity-Based Protein Profiling for the Identification of Novel Carbohydrate-Active Enzymes Involved in Xylan Degradation in the Hyperthermophilic Euryarchaeon Thermococcus sp. Strain 2319x1EIn: Frontiers in Microbiology, Jg. 12, 2022, 734039DOI, Online Volltext (Open Access)
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Enhanced underground metabolism challenges life at high temperature–metabolic thermoadaptation in hyperthermophilic ArchaeaIn: Current Opinion in Systems Biology, Jg. 30, 2022, 100423DOI, Online Volltext (Open Access)
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Erratum: Author Correction: Identification of fungal lignocellulose-degrading biocatalysts secreted by Phanerochaete chrysosporium via activity-based protein profiling (Communications biology (2022) 5 1 (1254))In: Communications Biology, Jg. 5, 2022, Nr. 1, S. 1319DOI (Open Access)
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Exopolysaccharide composition and size in Sulfolobus acidocaldarius biofilmsIn: Frontiers in Microbiology, Jg. 13, 2022, 982745DOI, Online Volltext (Open Access)
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Identification of fungal lignocellulose-degrading biocatalysts secreted by Phanerochaete chrysosporium via activity-based protein profilingIn: Communications Biology, Jg. 5, 2022, Nr. 1, 1254DOI, Online Volltext (Open Access)
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Thermostable and O2-Insensitive Pyruvate Decarboxylases from Thermoacidophilic Archaea Catalyzing the Production of AcetaldehydeIn: Biology, Jg. 11, 2022, Nr. 8, 1247DOI (Open Access)
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Workflows for optimization of enzyme cascades and whole cell catalysis based on enzyme kinetic characterization and pathway modellingIn: Current Opinion in Biotechnology, Jg. 74, 2022, S. 55 – 60DOI, Online Volltext (Open Access)
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Exposure to 1-Butanol Exemplifies the Response of the Thermoacidophilic Archaeon Sulfolobus acidocaldarius to Solvent StressIn: Applied and Environmental Microbiology, Jg. 87, 2021, Nr. 11DOI (Open Access)
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The biology of thermoacidophilic archaea from the order SulfolobalesIn: FEMS Microbiology Reviews, Jg. 45, 2021, Nr. 4, fuaa063DOI, Online Volltext (Open Access)
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Utilization of Phenol as Carbon Source by the Thermoacidophilic Archaeon Saccharolobus solfataricus P2 Is Limited by Oxygen Supply and the Cellular Stress ResponseIn: Frontiers in Microbiology, Jg. 11, 2021, S. 587032DOI (Open Access)
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A combined experimental and modelling approach for the Weimberg pathway optimisationIn: Nature Communications, Jg. 11, 2020, Nr. 1, S. 1098DOI (Open Access)
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Characterization of highly active 2-keto-3-deoxy-L-arabinonate and 2-keto-3-deoxy-D-xylonate dehydratases in terms of the biotransformation of hemicellulose sugars to chemicalsIn: Applied Microbiology and Biotechnology, Jg. 104, 2020, Nr. 16, S. 7023 – 7035DOI (Open Access)
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Corrigendum: Enzymatic Synthesis of 2-Keto-3-Deoxy-6-Phosphogluconate by the 6-Phosphogluconate-Dehydratase From Caulobacter crescentus (Frontiers in Bioengineering and Biotechnology, (2020), 8, 10.3389/fbioe.2020.00185)In: Frontiers in Bioengineering and Biotechnology, Jg. 8, 2020, S. 761DOI (Open Access)
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Enzymatic Synthesis of 2-Keto-3-Deoxy-6-Phosphogluconate by the 6-Phosphogluconate-Dehydratase From Caulobacter crescentusIn: Frontiers in Bioengineering and Biotechnology, Jg. 8, 2020, S. 185DOI (Open Access)
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Identification of XylR, the Activator of Arabinose/Xylose Inducible Regulon in Sulfolobus acidocaldarius and Its Application for Homologous Protein ExpressionIn: Frontiers in Microbiology, Jg. 11, 2020, S. 1066DOI (Open Access)
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N-Myc-induced metabolic rewiring creates novel therapeutic vulnerabilities in neuroblastomaIn: Scientific Reports, Jg. 10, 2020, Nr. 1, 7157DOI, Online Volltext (Open Access)
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Phosphorylation of the acyl-CoA binding pocket of the FadR transcription regulator in Sulfolobus acidocaldariusIn: Biochimie, Jg. 175, 2020, S. 120 – 124DOI, Online Volltext (Open Access)
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Salt Stress Response of Sulfolobus acidocaldarius Involves Complex Trehalose Metabolism Utilizing a Novel Trehalose-6-Phosphate Synthase (TPS)/Trehalose-6-Phosphate Phosphatase (TPP) PathwayIn: Applied and Environmental Microbiology, Jg. 86, 2020, Nr. 24, S. e01565 – 20DOI (Open Access)
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A TetR-family transcription factor regulates fatty acid metabolism in the archaeal model organism Sulfolobus acidocaldariusIn: Nature Communications, Jg. 10, 2019, Nr. 1, S. 1542DOI (Open Access)
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Early Response of Sulfolobus acidocaldarius to Nutrient LimitationIn: Frontiers in Microbiology, Jg. 9, 2019, S. 3201DOI (Open Access)
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The Carbon Switch at the Level of Pyruvate and Phosphoenolpyruvate in Sulfolobus solfataricus P2In: Frontiers in Microbiology, Jg. 10, 2019, S. 757DOI, Online Volltext (Open Access)
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Thermoacidophilic Sulfolobus species as source for extremozymes and as novel archaeal platform organismsIn: Current Opinion in Biotechnology, Jg. 59, 2019, S. 71 – 77
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Discovering novel hydrolases from hot environmentsIn: Biotechnology Advances, Jg. 36, 2018, Nr. 8, S. 2077 – 2100DOI (Open Access)
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Effect of UV irradiation on Sulfolobus acidocaldarius and involvement of the general transcription factor TFB3 in the early UV responseIn: Nucleic Acids Research, Jg. 46, 2018, Nr. 14, S. 7179 – 7192DOI, Online Volltext (Open Access)
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Insights into the evolutionary conserved regulation of Rio ATPase activity.In: Nucleic Acids Research, Jg. 46, 2018, Nr. 3, S. 1441 – 1456DOI (Open Access)
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Sulfolobus acidocaldarius transports pentoses via a carbohydrate uptake transporter 2 (CUT2)-type ABC transporter and metabolizes them through the aldolase-independent Weimberg pathwayIn: Applied and Environmental Microbiology, Jg. 84, 2018, Nr. 3, S. e01273 – 17DOI (Open Access)
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Activity-based protein profiling as a robust method for enzyme identification and screening in extremophilic ArchaeaIn: Nature Communications, Jg. 8, 2017, S. 15352DOI (Open Access)
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Oxidative Stickland reactions in an obligate aerobic organism – amino acid catabolism in the Crenarchaeon Sulfolobus solfataricusIn: The FEBS Journal, Jg. 284, 2017, Nr. 13, S. 2078 – 2095DOI, Online Volltext (Open Access)
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Phosphoglycerate kinase acts as a futile cycle at high temperatureIn: Microbiology, Jg. 163, 2017, Nr. 11, S. 1604 – 1612DOI (Open Access)
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Sulfolobus - A potential key organism in future biotechnologyIn: Frontiers in Microbiology, Jg. 8, 2017, S. 2474DOI (Open Access)
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Systems biology of the modified branched Entner-Doudoroff pathway in Sulfolobus solfataricusIn: PLoS ONE, Jg. 12, 2017, Nr. 7, S. e0180331DOI (Open Access)
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The Peculiar Glycolytic Pathway in Hyperthermophylic Archaea : Understanding Its Whims by Experimentation In SilicoIn: International Journal of Molecular Sciences (IJMS), Jg. 18, 2017, Nr. 4, S. 876DOI (Open Access)
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A systems biology approach reveals major metabolic changes in the thermoacidophilic archaeon Sulfolobus solfataricus in response to the carbon source L-fucose versus D-glucoseIn: Molecular Microbiology, Jg. 102, 2016, Nr. 5, S. 882 – 908DOI (Open Access)
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Isolation and Characterization of the First Xylanolytic Hyperthermophilic Euryarchaeon Thermococcus sp. Strain 2319x1 and Its Unusual Multidomain GlycosidaseIn: Frontiers in Microbiology, Jg. 7, 2016, S. 00552DOI (Open Access)
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Kohlenhydratstoffwechsel in Archaea–Besonderheiten und Herausforderung : Archaeen-StoffwechselIn: Biospektrum, Jg. 22, 2016, Nr. 5, S. 455 – 458
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Protein phosphorylation and its role in archaeal signal transductionIn: FEMS Microbiology Reviews, Jg. 40, 2016, Nr. 5, S. 625 – 647DOI (Open Access)
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Silberdotierte Calciumphosphat-Nanopartikel als antibakterielle Wirkstoffe : Synthese, Charakterisierung und biologische WirkungIn: Unikate: Berichte aus Forschung und Lehre, 2016, Nr. 48: Materials Chain : Forschung aus dem UA Ruhr-Profilschwerpunkt, S. 122 – 127DOI, Online Volltext (Open Access)
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A continuous method to prepare poorly crystalline silver-doped calcium phosphate ceramics with antibacterial propertiesIn: RSC Advances, Jg. 5, 2015, Nr. 54, S. 43172 – 43177DOI (Open Access)
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Isolation of Extracellular Polymeric Substances from Biofilms of the Thermoacidophilic Archaeon Sulfolobus acidocaldarius.In: Frontiers in Bioengineering and Biotechnology, Jg. 3, 2015, S. 123DOI, Online Volltext (Open Access)
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Origins of major archaeal clades correspond to gene acquisitions from bacteriaIn: Nature, Jg. 517, 2015, Nr. 7532, S. 77 – 80DOI, Online Volltext (Open Access)
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Carbohydrate metabolism in archaea : Current insights into unusual enzymes and pathways and their regulationIn: JAMA Ophthalmology, Jg. 132, 2014, Nr. 3, S. 326 – 331DOI (Open Access)
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Characterization of a phosphotriesterase-like lactonase from the hyperthermoacidophilic crenarchaeon Vulcanisaeta moutnovskiaIn: Journal of Biotechnology, 2014, Nr. 190, S. 11 – 17
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Investigation of the malE promoter and MalR, a positive regulator of the maltose regulon, for an improved expression system in Sulfolobus acidocaldariusIn: Applied and Environmental Microbiology, Jg. 80, 2014, Nr. 3, S. 1072 – 1081
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One-step synthesis of 2-keto-3-deoxy-D-gluconate by biocatalytic dehydration of D-gluconateIn: Journal of Biotechnology, Jg. 191, 2014, S. 69 – 77
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Systembiologie X-trem : Von der Grundlagenforschung zur Anwendung in hyperthermophilen ArchaeaIn: GIT: Labor-Fachzeitschrift, 2014, Nr. 12, S. 20 – 23
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A cool tool for hot and sour Archaea : Proteomics of Sulfolobus solfataricusIn: Proteomics, Jg. 13, 2013, Nr. 18-19, S. 2831 – 2850
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Archaeal signal transduction: Impact of protein phosphatase deletions on cell size, motility, and energy metabolism in sulfolobus acidocaldariusIn: Molecular and Cellular Proteomics (MCP), Jg. 12, 2013, Nr. 12, S. 3908 – 3923DOI (Open Access)
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Atypical protein kinases of the RIO family in archaeaIn: Biochemical Society Transactions, Jg. 41, 2013, Nr. 1, S. 399 – 404
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Intermediate instability at high temperature leads to low pathway efficiency for an in vitro reconstituted system of gluconeogenesis in Sulfolobus solfataricusIn: The FEBS Journal, Jg. 280, 2013, Nr. 18, S. 4666 – 4680
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Lrs14 transcriptional regulators influence biofilm formation and cell motility of CrenarchaeaIn: ISME Journal, Jg. 7, 2013, S. 1886 – 1898
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Silver-doped calcium phosphate nanoparticles : Synthesis, characterization, and toxic effects toward mammalian and prokaryotic cellsIn: Colloids and Surfaces B: Biointerfaces, 2013, Nr. 102, S. 724 – 729
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The First Prokaryotic Trehalose Synthase Complex Identified in the Hyperthermophilic Crenarchaeon Thermoproteus tenaxIn: PLoS ONE, Jg. 8, 2013, Nr. 4, S. e61354DOI (Open Access)
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Unraveling the function of paralogs of the aldehyde dehydrogenase super family from Sulfolobus solfataricusIn: Extremophiles, Jg. 17, 2013, Nr. 2, S. 205 – 216
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Unraveling the function of the two Entner-Doudoroff branches in the thermoacidophilic Crenarchaeon Sulfolobus solfataricus P2In: The FEBS Journal, Jg. 280, 2013, Nr. 4, S. 1126 – 1138
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Change of carbon source causes dramatic effects in the phospho-proteome of the archaeon Sulfolobus solfataricusIn: Journal of Proteome Research, Jg. 11, 2012, Nr. 10, S. 4823 – 4833
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Complementation of Sulfolobus solfataricus PBL2025 with an α-mannosidase : effects on surface attachment and biofilm formationIn: Extremophiles, Jg. 16, 2012, Nr. 1, S. 115 – 125
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Genome-scale reconstruction and analysis of the metabolic network in the hyperthermophilic archaeon Sulfolobus solfataricus.In: PLoS ONE, Jg. 7, 2012, Nr. 8, S. e43401DOI (Open Access)
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The toxic effect of silver ions and silver nanoparticles towards bacteria and human cells occurs in the same concentration rangeIn: RSC Advances, Jg. 2, 2012, Nr. 17, S. 6981 – 6987
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An additional glucose dehydrogenase from Sulfolobus solfataricus : fine-tuning of sugar degradation?In: Biochemical Society Transactions, Jg. 39, 2011, Nr. 1, S. 77 – 81
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Functional analysis of archaeal MBF1 by complementation studies in yeastIn: Biology Direct, 2011, Nr. 6, S. 18DOI, Online Volltext (Open Access)
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Functional curation of the Sulfolobus solfataricus P2 and S. acidocaldarius 98-3 complete genome sequencesIn: Extremophiles, Jg. 15, 2011, Nr. 6, S. 711 – 712
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Manche mögen's heiß — und sauer! : Zuckerabbau in Sulfolobus solfataricusIn: Biospektrum, Jg. 17, 2011, Nr. 1, S. 20 – 23
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The Complete Genome Sequence of Thermoproteus tenax : A Physiologically Versatile Member of the CrenarchaeotaIn: PLoS ONE, Jg. 6, 2011, Nr. 10, S. e24222DOI, Online Volltext (Open Access)
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“Hot standards” for the thermoacidophilic archaeon Sulfolobus solfataricusIn: Extremophiles, Jg. 14, 2010, Nr. 1, S. 119 – 142DOI (Open Access)
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Identification of an ortholog of the eukaryotic RNA polymerase III subunit RPC34 in Crenarchaeota and Thaumarchaeota suggests specialization of RNA polymerases for coding and non-coding RNAs in ArchaeaIn: Biology Direct, Jg. 4, 2009, S. 39DOI (Open Access)
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SulfoSYS - Sulfolobus Systems Biology : towards a Silicon Cell Model for the central carbohydrate metabolism of the Archaeon Sulfolobus solfataricus under temperature variation.In: Biochemical Society Transactions, Jg. 37, 2009, Nr. 1, S. 58 – 64
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A novel trehalose synthesizing pathway in the hyperthermophilic Crenarchaeon Thermoproteus tenax : the unidirectional TreT pathwayIn: Archives of Microbiology, Jg. 190, 2008, Nr. 3, S. 355 – 369
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Crystal structure and stereochemical studies of KD(P)G aldolase from Thermoproteus tenaxIn: Proteins: Structure, Function and Genetics, Jg. 72, 2008, Nr. 1, S. 35 – 43
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DNA Microarray Analysis of Central Carbohydrate Metabolism : Glycolytic/Gluconeogenic Carbon Switch in the Hyperthermophilic Crenarchaeum Thermoproteus tenaxIn: Journal of Bacteriology, Jg. 190, 2008, Nr. 6, S. 2231 – 2238DOI, Online Volltext (Open Access)
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The central carbohydrate metabolism of the hyperthermophilic crenarchaeote Thermoproteus tenax : Pathways and insights into their regulationIn: Archives of Microbiology, Jg. 190, 2008, Nr. 3, S. 231 – 245
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The non-phosphorylating glyceraldehyde-3-phosphate dehydrogenase (GAPN) of Sulfolobus solfataricus : a key-enzyme of the semi-phosphorylative branch of the Entner–Doudoroff pathwayIn: Extremophiles, Jg. 12, 2008, Nr. 1, S. 75 – 88
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CC1, a Novel Crenarchaeal DNA Binding ProteinIn: Journal of Bacteriology, Jg. 189, 2007, Nr. 2, S. 403 – 409DOI (Open Access)
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Glycerate kinase of the hyperthermophilic archaeon Thermoproteus tenax : new insights into the phylogenetic distribution and physiological role of members of the three different glycerate kinase classesIn: BMC Genomics, Jg. 8, 2007, S. 301 – 318DOI (Open Access)
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Phosphoenolpyruvate synthetase and pyruvate, phosphate dikinase of Thermoproteus tenax : key pieces in the puzzle of archaeal carbohydrate metabolismIn: Molecular Microbiology, Jg. 60, 2006, Nr. 2, S. 287 – 298
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Mechanism of the Schiff Base Forming Fructose-1,6-bisphosphate Aldolase : Structural Analysis of Reaction IntermediatesIn: Biochemistry, Jg. 44, 2005, Nr. 11, S. 4222 – 4229
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The semi-phosphorylative Entner-Doudoroff pathway in hyperthermophilic archaea : a re-evaluationIn: Biochemical Journal, Jg. 390, 2005, Nr. 2, S. 529 – 540DOI (Open Access)
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Unusual pathways and enzymes of central carbohydrate metabolism in ArchaeaIn: Current Opinion in Microbiology, Jg. 8, 2005, Nr. 6, S. 695 – 705
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Embden-Meyerhof-Parnas and Entner-Doudoroff pathways in Thermoproteus tenax : metabolic parallelism or specific adaptation?In: Biochemical Society Transactions, Jg. 32, 2004, Nr. 2, S. 303 – 304
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Reconstruction of the central carbohydrate metabolism of Thermoproteus tenax by use of genomic and biochemical dataIn: Journal of Bacteriology, Jg. 186, 2004, Nr. 7, S. 2179 – 2194DOI (Open Access)
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Structure, function and evolution of the Archaeal class I fructose-1,6-bisphosphate aldolaseIn: Biochemical Society Transactions, Jg. 32, 2004, Nr. 2, S. 259 – 263
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Crystal Structure of an Archaeal Class I Aldolase and the Evolution of (βα)₈ Barrel ProteinsIn: The Journal of Biological Chemistry (JBC), Jg. 278, 2003, Nr. 47, S. 47253 – 47260DOI (Open Access)
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The hexokinase of the hyperthermophile Thermoproteus tenax : ATP-dependent hexokinases and ADP-dependent glucokinases, teo alternatives for glucose phosphorylation in ArchaeaIn: The Journal of Biological Chemistry (JBC), Jg. 278, 2003, Nr. 21, S. 18744 – 18753DOI (Open Access)
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Archaeal Fructose-1,6-bisphosphate Aldolases Constitute a New Family of Archaeal Type Class I AldolaseIn: The Journal of Biological Chemistry (JBC), Jg. 276, 2001, Nr. 31, S. 28710 – 28718DOI (Open Access)
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Pyrophosphate-dependent phosphofructokinase from Thermoproteus tenaxIn: Methods in Enzymology, Jg. 331: Hyperthermophilic Enzymes Part B, 2001, S. 54 – 62
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Role of two different glyceraldehyde-3-phosphate dehydrogenases in controlling the reversible Embden–Meyerhof–Parnas pathway in Thermoproteus tenax : regulation on protein and transcript levelIn: Extremophiles, Jg. 5, 2001, Nr. 2, S. 101 – 109
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Tiny TIM : A small, tetrameric, hyperthermostable triosephosphate isomeraseIn: Journal of Molecular Biology (JMB), Jg. 306, 2001, Nr. 4, S. 745 – 757
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Pyruvate kinase of the hyperthermophilic crenarchaeote Thermoproteus tenax : Physiological role and phylogenetic aspectsIn: Journal of Bacteriology, Jg. 182, 2000, Nr. 7, S. 2001 – 2009DOI (Open Access)
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NAD+-dependent glyceraldehyde-3-phosphate dehydrogenase from Thermoproteus tenax : The first identified archaeal member of the aldehyde dehydrogenase superfamily is a glycolytic enzyme with unusual regulatory propertiesIn: The Journal of Biological Chemistry (JBC), Jg. 273, 1998, Nr. 11, S. 6149 – 6156DOI (Open Access)
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PPi-dependent phosphofructokinase from Thermoproteus tenax, an archaeal descendant of an ancient line in phosphofructokinase evolutionIn: Journal of Bacteriology, Jg. 180, 1998, Nr. 8, S. 2137 – 2143DOI (Open Access)
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Carbohydrate metabolism in Thermoproteus tenax : in vivo utilization of the non-phosphorylative Entner-Doudoroff pathway and characterization of its first enzyme, glucose dehydrogenaseIn: Archives of Microbiology, Jg. 168, 1997, Nr. 2, S. 120 – 127
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Sulfophobococcus zilligii gen. nov., spec. nov. : a Novel Hyperthermophilic Archaeum Isolated from Hot Alkaline Springs of IcelandIn: Systematic and Applied Microbiology, Jg. 20, 1997, Nr. 1, S. 102 – 110
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Glyceraldehyde-3-Phosphate Dehydrogenases from Archaea : Objects for Studying Protein ThermoadaptationIn: Biocatalysis and Biotransformation, Jg. 11, 1994, Nr. 2, S. 151 – 164
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Glucose catabolism of the hyperthermophilic archaeum Thermoproteus tenaxIn: FEMS Microbiology Letters, Jg. 111, 1993, Nr. 1, S. 1 – 8
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Characterization, functional reconstitution and activation by fusicoccin of a Ca2+-ATPase from Corydalis sempervirens pers. Cell suspension culturesIn: Plant and Cell Physiology, Jg. 32, 1991, Nr. 7, S. 1049 – 1056
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Calcium Fluxes across the Plasma Membrane of Commelina communis L. Assayed in a Cell-Free SystemIn: Plant Physiology, Jg. 93, 1990, Nr. 3, S. 940 – 947DOI (Open Access)
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Extreme Biocatalysts : From Basic Research to Biotechnological ApplicationsIn: International Journal of Molecular Sciences (IJMS). Basel: MDPI, Jg. 25, 2024, Nr. 12, 6492DOI (Open Access)
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Editorial: Applied Microbiology for Chemical SynthesesIn: Frontiers in Microbiology. Lausanne: Frontiers Media, Jg. 8, 2017, S. 1931DOI (Open Access)
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The third domain of life : Interview with Bettina SiebersIn: International Innovation Magazine, Jg. Issue Environment, 2012, S. 30 – 32
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Glycerol degradation in the thermoacidophilic crenarchaeon Sulfolobus acidocaldarius involves an unusual glycerol-3-phosphate dehydrogenase2024DOI (Open Access)
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Simplified Enzymatic Synthesis of 2-Keto-3-Deoxy-D-Gluconate from D-Gluconate Using the Gluconate Dehydratase from Thermoproteus tenaxIn: Archaea: Methods and Protocols / Ferreira-Cerca, Sébastien (Hrsg.). New York: Springer, 2022, S. 351 – 362
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Biofilms X-treme : Composition of extracellular polymeric substances and exopolysaccharide synthesis in ArchaeaIn: The Perfect Slime: Microbial Extracellular Polymeric Substances (EPS) / Flemming, Hans-Curt; Neu, Thomas; Wingender, Jost (Hrsg.). London: IWA Publishing, 2016, S. 301 – 317
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The Family SulfolobaceaeIn: The Prokaryotes: Other Major Lineages of Bacteria and The Archaea / Rosenberg, Eugenie; DeLong, Edward F.; Lory, Stephen (Hrsg.). Berlin [u.a.]: Springer, 2014, S. 323 – 346
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Sulfolobus Systems Biology : cool hot design for metabolic pathwaysIn: Systems microbiology: current topics and applications / Wren, Brendan W.; Robertson, Brian D. (Hrsg.). Norwich, UK: Horizon Scientific Press and Caister Academic Press, 2012
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Physiology, Metabolism, and Enzymology of Thermoacidophiles : Reconstruction of the central carbon metabolic network of thermoacidophilic ArchaeaIn: Extremophiles Handbook / Horikoshi, Koki (Hrsg.). Tokio [u.a.]: Springer Publishing, 2011, S. 601 – 639
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Silver ion-doped calcium phosphate nanoparticles for antibacterial applicationIn: 24th European Conference on Biomaterials - Annual Conference of the European Society for Biomaterials / 24th European Conference on Biomaterials (EBS), 4-8 September 2011, Dublin, Ireland, 2011
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The Glycolytic Pathways of Archaea : Evolution By TinkeringIn: Archaea: Evolution, Physiology, and Molecular Biology / Garrett, Roger A.; Klenk, Hans-Peter (Hrsg.). Malden, 2007, Nr. Blackwell, S. 247 – 260
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The hyperthermophilic archaeon Sulfolobus – from exploration and exploitationIn: Geothermal biology and geochemistry in Yellowstone National Park: proceedings of the Thermal Biology Institute workshop / Biology Institute workshop, Yellowstone National Park, WY, October 2003 / Inskeep, William Parks (Hrsg.). Bozeman: Montana State University Publications, 2005, S. 261 – 276
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Kleine Überlebenskünstler für die Biotechnologie : Systembiologie Broschüre des BMBF [Broschüre]Bundesministerium für Bildung und Forschung2016