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Ludwig Roland

Unter PUBLIKATIONEN werden die wissenschaftlichen Publikationen der BOKU Forscher und BOKU Forscherinnen gelistet, inbesondere Veröffentlichungen in SCI- / SSCI-gelisteten, referierten und nicht-referierten Fachzeitschriften, weiters Beiträge in Sammelwerken, Proceedings sowie Monographien gelistet.

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Reprints - Proceedingsbeiträge, Publikationen im Eigenverlag des Autors & OPEN ACCESS-Publikationen - von Ludwig Roland

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Kracher, D; Andlar, M; Furtmüller, PG; Ludwig, R; :
Active-site copper reduction promotes substrate binding of fungal lytic polysaccharide monooxygenase and reduces stability.
J Biol Chem. 2018; 293(5):-1687, 2018
Bollella, P; Gorton, L; Ludwig, R; Antiochia, R:
A Third Generation Glucose Biosensor Based on Cellobiose Dehydrogenase Immobilized on a Glassy Carbon Electrode Decorated with Electrodeposited Gold Nanoparticles: Characterization and Application in Human Saliva
SENSORS-BASEL. 2017; 17(8):, 2017
Haske-Cornelius, O; Pellis, A; Tegl, G; Wurz, S; Saake, B; Ludwig, R; Sebastian, A; Nyanhongo, GS; Guebitz, GM:
Enzymatic Systems for Cellulose Acetate Degradation
CATALYSTS. 2017; 7(10):, 2017
Ma, S; Preims, M; Piumi, F; Kappel, L; Seiboth, B; Record, E; Kracher, D; Ludwig, R:
Molecular and catalytic properties of fungal extracellular cellobiose dehydrogenase produced in prokaryotic and eukaryotic expression systems
MICROB CELL FACT. 2017; 16: , 2017
Martinez, AT; Ruiz-Duenas, FJ; Camarero, S; Serrano, A; Linde, D; Lund, H; Vind, J; Tovborg, M; Herold-Majumdar, OM; Hofrichter, M; Liers, C; Ullrich, R; Scheibner, K; Sannia, G; Piscitelli, A; Pezzella, C; Sener, ME; Kilic, S; van Berkel, WJH; Guallar, V; Lucas, MF; Zuhse, R; Ludwig, R; Hollmann, F; Fernandez-Fueyo, E; Record, E; Faulds, CB; Tortajada, M; Winckelmann, I; Rasmussen, JA; Gelo-Pujic, M; Gutierre, A; del Rio, JC; Rencoret, J; Alcalde, M:
Oxidoreductases on their way to industrial biotransformations
BIOTECHNOL ADV. 2017; 35(6): 815-831. , 2017
Scheiblbrandner, S; Breslmayr, E; Csarman, F; Paukner, R; Fuhrer, J; Herzog, PL; Shleev, SV; Osipov, EM; Tikhonova, TV; Popov, VO; Haltrich, D; Ludwig, R; Kittl, R:
Evolving stability and pH-dependent activity of the high redox potential Botrytis aclada laccase for enzymatic fuel cells
SCI REP-UK. 2017; 7: , 2017
Megson, ZA; Koerdt, A; Schuster, H; Ludwig, R; Janesch, B; Frey, A; Naylor, K; Wilson, IBH; Stafford, GP; Messner, P; Schaffer, C:
Characterization of an alpha-L-fucosidase from the periodontal pathogen Tannerella forsythia
VIRULENCE. 2015; 6(3): 282-292. , 2015
Zolghadr, B; Gasselhuber, B; Windwarder, M; Pabst, M; Kracher, D; Kerndl, M; Zayni, S; Hofinger-Horvath, A; Ludwig, R; Haltrich, D; Oostenbrink, C; Obinger, C; Kosma, P; Messner, P; Schaffer, C:
UDP-sulfoquinovose formation by Sulfolobus acidocaldarius
EXTREMOPHILES. 2015; 19(2): 451-467. , 2015
Falk, M; Alcalde, M; Bartlett, PN; De Lacey, AL; Gorton, L; Gutierrez-Sanchez, C; Haddad, R; Kilburn, J; Leech, D; Ludwig, R; Magner, E; Mate, DM; Conghaile, PO; Ortiz, R; Pita, M; Poller, S; Ruzgas, T; Salaj-Kosla, U; Schuhmann, W; Sebelius, F; Shao, ML; Stoica, L; Sygmund, C; Tilly, J; Toscano, MD; Vivekananthan, J; Wright, E; Shleev, S:
Self-Powered Wireless Carbohydrate/Oxygen Sensitive Biodevice Based on Radio Signal Transmission
PLOS ONE. 2014; 9(10):, 2014
Isaksen, T; Westereng, B; Aachmann, FL; Agger, JW; Kracher, D; Kittl, R; Ludwig, R; Haltrich, D; Eijsink, VGH; Horn, SJ:
A C4-oxidizing Lytic Polysaccharide Monooxygenase Cleaving Both Cellulose and Cello-oligosaccharides
J BIOL CHEM. 2014; 289(5): 2632-2642. , 2014
Osipov, E; Polyakov, K; Kittl, R; Shleev, S; Dorovatovsky, P; Tikhonova, T; Hann, S; Ludwig, R; Popov, V; :
Effect of the L499M mutation of the ascomycetous Botrytis aclada laccase on redox potential and catalytic properties.
Acta Crystallogr D Biol Crystallogr. 2014; 70(Pt 11):2913-2923, 2014
Tanne, J; Kracher, D; Dietzel, B; Schulz, B; Ludwig, R; Lisdat, F; Scheller, FW; Bier, FF; :
Carboxylated or aminated polyaniline-multiwalled carbon nanotubes nanohybrids for immobilization of cellobiose dehydrogenase on gold electrodes.
Biosensors (Basel). 2014; 4(4):370-386, 2014
Ludwig, R; Ortiz, R; Schulz, C; Harreither, W; Sygmund, C; Gorton, L; :
Cellobiose dehydrogenase modified electrodes: advances by materials science and biochemical engineering.
Anal Bioanal Chem. 2013; 405(11):3637-3658, 2013
Mate, DM; Gonzalez-Perez, D; Falk, M; Kittl, R; Pita, M; De Lacey, AL; Ludwig, R; Shleev, S; Alcalde, M:
Blood tolerant laccase by directed evolution.
Chem Biol. 2013; 20(2):223-231, 2013
Sygmund, C; Santner, P; Krondorfer, I; Peterbauer, CK; Alcalde, M; Nyanhongo, GS; Guebitz, GM; Ludwig, R:
Semi-rational engineering of cellobiose dehydrogenase for improved hydrogen peroxide production
MICROB CELL FACT. 2013; 12: , 2013
Kittl, R; Gonaus, C; Pillei, C; Haltrich, D; Ludwig, R:
Constitutive expression of Botrytis aclada laccase in Pichia pastoris.
Bioengineered. 2012; 3(4):232-235, 2012
Kittl, R; Kracher, D; Burgstaller, D; Haltrich, D; Ludwig, R:
Production of four Neurospora crassa lytic polysaccharide monooxygenases in Pichia pastoris monitored by a fluorimetric assay
BIOTECHNOL BIOFUELS. 2012; 5: , 2012
Sygmund, C; Kracher, D; Scheiblbrandner, S; Zahma, K; Felice, AK; Harreither, W; Kittl, R; Ludwig, R; :
Characterization of the two Neurospora crassa cellobiose dehydrogenases and their connection to oxidative cellulose degradation.
Appl Environ Microbiol. 2012; 78(17):6161-6171, 2012
Zafar, MN; Beden, N; Leech, D; Sygmund, C; Ludwig, R; Gorton, L:
Characterization of different FAD-dependent glucose dehydrogenases for possible use in glucose-based biosensors and biofuel cells.
Anal Bioanal Chem. 2012; 402(6):2069-2077, 2012
Harreither, W; Sygmund, C; Augustin, M; Narciso, M; Rabinovich, ML; Gorton, L; Haltrich, D; Ludwig, R:
Catalytic Properties and Classification of Cellobiose Dehydrogenases from Ascomycetes
APPL ENVIRON MICROBIOL. 2011; 77(5): 1804-1815. , 2011
Sygmund, C; Staudigl, P; Klausberger, M; Pinotsis, N; Djinovic-Carugo, K; Gorton, L; Haltrich, D; Ludwig, R:
Heterologous overexpression of Glomerella cingulata FAD-dependent glucose dehydrogenase in Escherichia coli and Pichia pastoris
MICROB CELL FACT. 2011; 10: , 2011
Tasca, F; Harreither, W; Ludwig, R; Gooding, JJ; Gorton, L:
Cellobiose Dehydrogenase Aryl Diazoniunn Modified Single Walled Carbon Nanotubes: Enhanced Direct Electron Transfer through a Positively Charged Surface
ANAL CHEM. 2011; 83(8): 3042-3049. , 2011
Spadiut, O; Posch, G; Ludwig, R; Haltrich, D; Peterbauer, CK:
Evaluation of different expression systems for the heterologous expression of pyranose 2-oxidase from Trametes multicolor in E. coli
MICROB CELL FACT. 2010; 9: , 2010
Harreither, W; Sygmund, C; Dünhofen, E; Vicuña, R; Haltrich, D; Ludwig, R; :
Cellobiose dehydrogenase from the ligninolytic basidiomycete Ceriporiopsis subvermispora.
Appl Environ Microbiol. 2009; 75(9):2750-2757, 2009
Kujawa, M; Ebner, H; Leitner, C; Hallberg, BM; Prongjit, M; Sucharitakul, J; Ludwig, R; Rudsander, U; Peterbauer, C; Chaiyen, P; Haltrich, D; Divne, C:
Structural basis for substrate binding and regioselective oxidation of monosaccharides at C3 by pyranose 2-oxidase.
J Biol Chem. 2006; 281(46):35104-35115, 2006
Ludwig, R., Greus, G., Baminger, U., Kulbe, K.D., Haltrich, D.:
Application of cellobiose dehydrogenase for a new biocatalytic process.
Abstr. Jahrestagung Österr. Ges. Biotechnol., Schloß Seggau/Leibnitz, A (März 18-19, 1999), P18-38, 1999


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