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Kai Ostermann

Showing results (11-20 of 33) with videos related to

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Sensors (Basel, Switzerland)|November 16, 2013
Temporal and spatial properties of a yeast multi-cellular amplification system based on signal molecule diffusionMichael Jahn, Annett Mölle, Gerhard Rödel, et al.
Engineering in Life Sciences|August 8, 2024
Genetic modules for α-factor pheromone controlled growth regulation of <i>Saccharomyces cerevisiae</i>Uta Gutbier, Juliane Korp, Lennart Scheufler, et al.
Plasmid|November 30, 2017
Pheromone-inducible expression vectors for fission yeast Schizosaccharomyces pombeStefan Hennig, Nadine Hornauer, Gerhard Rödel, et al.
Applied Biochemistry and Biotechnology|October 16, 2010
Vectors for glucose-dependent protein expression in Saccharomyces cerevisiaeSimone Thierfelder, Kai Ostermann, Andy Göbel, et al.
Applied Microbiology and Biotechnology|October 22, 2014
A yeast pheromone-based inter-species communication systemStefan Hennig, André Clemens, Gerhard Rödel, et al.
Applied Microbiology and Biotechnology|April 13, 2011
Hydrophobin signal sequence mediates efficient secretion of recombinant proteins in Pichia pastorisKirsten Kottmeier, Kai Ostermann, Thomas Bley, et al.
Biosensors|September 1, 2019
Surface Functionalization by Hydrophobin-EPSPS Fusion Protein Allows for the Fast and Simple Detection of GlyphosateJulia Döring, David Rettke, Gerhard Rödel, et al.
Bioprocess and Biosystems Engineering|June 16, 2010
Applying dimorphic yeasts as model organisms to study mycelial growth: part 2. Use of mathematical simulations to identify different construction principles in yeast coloniesThomas Walther, Holger Reinsch, Kai Ostermann, et al.
Yeast (Chichester, England)|April 12, 2013
Overexpression of ctr1Δ300, a high-affinity copper transporter with deletion of the cytosolic C-terminus in Saccharomyces cerevisiae under excess copper, leads to disruption of transition metal homeostasis and transcriptional remodelling of cellular processesAstrid Schuller, Gudrun Auffermann, Katja Zoschke, et al.
Bioprocess and Biosystems Engineering|June 16, 2010
Applying dimorphic yeasts as model organisms to study mycelial growth: part 1. Experimental investigation of the spatio-temporal development of filamentous yeast coloniesThomas Walther, Holger Reinsch, Philipp Weber, et al.
Pageof 4

Showing results (11-20 of 33) with videos related to

Sort By:
Pageof 4
Sensors (Basel, Switzerland)|November 16, 2013
Temporal and spatial properties of a yeast multi-cellular amplification system based on signal molecule diffusionMichael Jahn, Annett Mölle, Gerhard Rödel, et al.
Engineering in Life Sciences|August 8, 2024
Genetic modules for α-factor pheromone controlled growth regulation of <i>Saccharomyces cerevisiae</i>Uta Gutbier, Juliane Korp, Lennart Scheufler, et al.
Plasmid|November 30, 2017
Pheromone-inducible expression vectors for fission yeast Schizosaccharomyces pombeStefan Hennig, Nadine Hornauer, Gerhard Rödel, et al.
Applied Biochemistry and Biotechnology|October 16, 2010
Vectors for glucose-dependent protein expression in Saccharomyces cerevisiaeSimone Thierfelder, Kai Ostermann, Andy Göbel, et al.
Applied Microbiology and Biotechnology|October 22, 2014
A yeast pheromone-based inter-species communication systemStefan Hennig, André Clemens, Gerhard Rödel, et al.
Applied Microbiology and Biotechnology|April 13, 2011
Hydrophobin signal sequence mediates efficient secretion of recombinant proteins in Pichia pastorisKirsten Kottmeier, Kai Ostermann, Thomas Bley, et al.
Biosensors|September 1, 2019
Surface Functionalization by Hydrophobin-EPSPS Fusion Protein Allows for the Fast and Simple Detection of GlyphosateJulia Döring, David Rettke, Gerhard Rödel, et al.
Bioprocess and Biosystems Engineering|June 16, 2010
Applying dimorphic yeasts as model organisms to study mycelial growth: part 2. Use of mathematical simulations to identify different construction principles in yeast coloniesThomas Walther, Holger Reinsch, Kai Ostermann, et al.
Yeast (Chichester, England)|April 12, 2013
Overexpression of ctr1Δ300, a high-affinity copper transporter with deletion of the cytosolic C-terminus in Saccharomyces cerevisiae under excess copper, leads to disruption of transition metal homeostasis and transcriptional remodelling of cellular processesAstrid Schuller, Gudrun Auffermann, Katja Zoschke, et al.
Bioprocess and Biosystems Engineering|June 16, 2010
Applying dimorphic yeasts as model organisms to study mycelial growth: part 1. Experimental investigation of the spatio-temporal development of filamentous yeast coloniesThomas Walther, Holger Reinsch, Philipp Weber, et al.
Pageof 4