Search Items: recombinant protein production, . hits: 31
** Zahrl, RJ; Prielhofer, R; Burgard, J; Mattanovich, D; Gasser, B Synthetic activation of yeast stress response improves secretion of recombinant proteins.
NEW BIOTECHNOL. 2023; 73: 19-28. WoS PubMed FullText FullText_BOKU** Boonyanan, P; Imsoonthornruksa, S; Seifert, G; Cairns, MK A Model for Pharmaceutical Proteins Production from Arabidopsis Suspension Culture.
CHIANG MAI J SCI. 2022; 49(4): 1028-1039. WoS FullText FullText_BOKU** Goritzer, K; Grandits, M; Grunwald-Gruber, C; Figl, R; Mercx, S; Navarre, C; Ma, JKC; Teh, AYH Engineering the N-glycosylation pathway of Nicotiana tabacum for molecular pharming using CRISPR/Cas9.
** Mayer, F; Cserjan-Puschmann, M; Haslinger, B; Shpylovyi, A; Dalik, T; Sam, C; Hahn, R; Striedner, G Strain specific properties of Escherichia coli can prevent non-canonical amino acid misincorporation caused by scale-related process heterogeneities.
** Staudacher, J; Rebnegger, C; Dohnal, T; Landes, N; Mattanovich, D; Gasser, B Going beyond the limit: Increasing global translation activity leads to increased productivity of recombinant secreted proteins in Pichia pastoris.
METAB ENG. 2022; 70: 181-195. WoS PubMed FullText FullText_BOKU** Vazulka, S; Schiavinato, M; Wagenknecht, M; Cserjan-Puschmann, M; Striedner, G; Interaction of Periplasmic Fab Production and Intracellular Redox Balance in .
** Zahrl, RJ; Prielhofer, R; Ataa, O; Baumann, K; Mattanovich, D; Gasser, B Pushing and pulling proteins into the yeast secretory pathway enhances recombinant protein secretion.
METAB ENG. 2022; 74: 36-48. WoS PubMed FullText FullText_BOKU** Bhaskara, V; Leal, MT; Seigner, J; Friedrich, T; Kreidl, E; Gadermaier, E; Tesarz, M; Rogalli, A; Stangl, L; Wallwitz, J; Hammel, K; Rothbauer, M; Moll, H; Ertl, P; Hahn, R; Himmler, G; Bauer, A; Casanova, E Efficient production of recombinant secretory IgA against Clostridium difficile toxins in CHO-K1 cells.
** Muralidharan-Chari, V; Wurz, Z; Doyle, F; Henry, M; Diendorfer, A; Tenenbaum, SA; Borth, N; Eveleth, E; Sharfstein, ST PTSelect (TM): A post-transcriptional technology that enables rapid establishment of stable CHO cell lines and surveillance of clonal variation.
J BIOTECHNOL. 2021; 325: 360-371. WoS PubMed FullText FullText_BOKU** Stargardt, P; Striedner, G; Mairhofer, J Tunable expression rate control of a growth-decoupled T7 expression system by L-arabinose only.
** Totaro, D; Radoman, B; Schmelzer, B; Rothbauer, M; Steiger, MG; Mayr, T; Sauer, M; Ertl, P; Mattanovich, D; Microscale Perfusion-Based Cultivation for Pichia pastoris Clone Screening Enables Accelerated and Optimized Recombinant Protein Production Processes..
** Stargardt, P; Feuchtenhofer, L; Cserjan-Puschmann, M; Striedner, G; Mairhofer, J Bacteriophage Inspired Growth-Decoupled Recombinant Protein Production in Escherichia coli.
ACS SYNTH BIOL. 2020; 9(6): 1336-1348. WoS PubMed FullText FullText_BOKU** Lemmerer, M; Mairhofer, J; Lepak, A; Longus, K; Hahn, R; Nidetzky, B; Decoupling of recombinant protein production from Escherichia coli cell growth enhances functional expression of plant Leloir glycosyltransferases..
Biotechnol Bioeng. 2019; 116(6):1259-1268 WoS PubMed FullText FullText_BOKU** Marsalek, L; Puxbaum, V; Buchetics, M; Mattanovich, D; Gasser, B Disruption of vacuolar protein sorting components of the HOPS complex leads to enhanced secretion of recombinant proteins in Pichia pastoris.
** Prielhofer, R; Reichinger, M; Wagner, N; Claes, K; Kiziak, C; Gasser, B; Mattanovich, D Superior protein titers in half the fermentation time: Promoter and process engineering for the glucose-regulated GTH1 promoter of Pichia pastoris.
BIOTECHNOL BIOENG. 2018; 115(10): 2479-2488. WoS PubMed FullText FullText_BOKU** Zahrl, RJ; Mattanovich, D; Gasser, B The impact of ERAD on recombinant protein secretion in Pichia pastoris (syn Komagataella spp.).
MICROBIOL-SGM. 2018; 164(4): 453-463. WoS PubMed FullText FullText_BOKU** Marsalek, L; Gruber, C; Altmann, F; Aleschko, M; Mattanovich, D; Gasser, B; Puxbaum, V; Disruption of genes involved in CORVET complex leads to enhanced secretion of heterologous carboxylesterase only in protease deficient Pichia pastoris..
Biotechnol J. 2017; 12(5): WoS PubMed FullText FullText_BOKU** Melcher, M; Scharl, T; Luchner, M; Striedner, G; Leisch, F; Boosted structured additive regression for Escherichia coli fed-batch fermentation modeling..
Biotechnol Bioeng. 2017; 114(2):321-334 WoS PubMed FullText FullText_BOKU** Przylucka, A; Akcapinar, GB; Bonazza, K; Mello-de-Sousa, TM; Mach-Aigner, AR; Lobanov, V; Grothe, H; Kubicek, CP; Reimhult, E; Druzhinina, IS; COMPARATIVE PHYSIOCHEMICAL ANALYSIS OF HYDROPHOBINS PRODUCED IN ESCHERICHIA COLI AND PICHIA PASTORIS..
** Zahrl, RJ; Pena, DA; Mattanovich, D; Gasser, B Systems biotechnology for protein production in Pichia pastoris.
FEMS YEAST RES. 2017; 17(7): WoS PubMed FullText FullText_BOKU** Schindler, S; Missbichler, B; Walther, C; Sponring, M; Cserjan-Puschmann, M; Auer, B; Schneider, R; Durauer, A N-pro fusion technology: On-column complementation to improve efficiency in biopharmaceutical production.
** Luchner, M; Striedner, G; Cserjan-Puschmann, M; Strobl, F; Bayer, K Online prediction of product titer and solubility of recombinant proteins in Escherichia coli fed-batch cultivations.
J CHEM TECHNOL BIOT. 2015; 90(2): 283-290. WoS FullText FullText_BOKU** Melcher, M; Scharl, T; Spangl, B; Luchner, M; Cserjan, M; Bayer, K; Leisch, F; Striedner, G; The potential of random forest and neural networks for biomass and recombinant protein modeling in Escherichia coli fed-batch fermentations..
Biotechnol J. 2015; 10(11):1770-1782 WoS PubMed FullText FullText_BOKU** Maccani, A; Landes, N; Stadlmayr, G; Maresch, D; Leitner, C; Maurer, M; Gasser, B; Ernst, W; Kunert, R; Mattanovich, D Pichia pastoris secretes recombinant proteins less efficiently than Chinese hamster ovary cells but allows higher space-time yields for less complex proteins.
** Marisch, K; Bayer, K; Cserjan-Puschmann, M; Luchner, M; Striedner, G Evaluation of three industrial Escherichia coli strains in fed-batch cultivations during high-level SOD protein production.
** Dragosits, M; Frascotti, G; Bernard-Granger, L; Vazquez, F; Giuliani, M; Baumann, K; Rodriguez-Carmona, E; Tokkanen, J; Parrilli, E; Wiebe, MG; Kunert, R; Maurer, M; Gasser, B; Sauer, M; Branduardi, P; Pakula, T; Saloheimo, M; Penttila, M; Ferrer, P; Tutino, ML; Villaverde, A; Porro, D; Mattanovich, D Influence of Growth Temperature on the Production of Antibody Fab Fragments in Different Microbes: A Host Comparative Analysis.
BIOTECHNOL PROGR. 2011; 27(1): 38-46. WoS PubMed FullText FullText_BOKU** Gasser, B; Dragosits, M; Mattanovich, D; Engineering of biotin-prototrophy in Pichia pastoris for robust production processes..
Metab Eng. 2010; 12(6):573-580 WoS PubMed FullText FullText_BOKU** Stadlmayr, G; Benakovitsch, K; Gasser, B; Mattanovich, D; Sauer, M; Genome-scale analysis of library sorting (GALibSo): Isolation of secretion enhancing factors for recombinant protein production in Pichia pastoris..
Biotechnol Bioeng. 2010; 105(3):543-555 WoS PubMed FullText FullText_BOKU** Pinsach, J; de Mas, C; Lopez-Santin, J; Striedner, G; Bayer, K Influence of process temperature on recombinant enzyme activity in Escherichia coli fed-batch Cultures.
ENZYME MICROB TECHNOL. 2008; 43(7): 507-512. WoS FullText FullText_BOKU** Vidal, L; Pinsach, J; Striedner, G; Caminal, G; Ferrer, P Development of an antibiotic-free plasmid selection system based on glycine auxotrophy for recombinant protein overproduction in Escherichia coli..
J Biotechnol. 2008; 134(1-2):127-136 WoS PubMed FullText FullText_BOKU** Weise A, Altmann F, Rodriguez-Franco M, Sjoberg ER, Baumer W, Launhardt H, Kietzmann M, Gorr G. High-level expression of secreted complex glycosylated recombinant human erythropoietin in the Physcomitrella Delta-fuc-t Delta-xyl-t mutant..
PLANT BIOTECHNOL J, 5, 389-401; ISSN 1467-7644 WoS PubMed FullText FullText_BOKU