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Pichia pastoris

About: Pichia pastoris is a research topic. Over the lifetime, 7937 publications have been published within this topic receiving 162645 citations. The topic is also known as: Komagataella pastoris.


Papers
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Journal ArticleDOI
TL;DR: The data point out that the physiological response to increased osmolarity is different to S. cerevisiae and might be used in future strain and bioprocess engineering of this biotechnologically relevant yeast.
Abstract: The effect of osmolarity on cellular physiology has been subject of investigation in many different species. High osmolarity is of importance for biotechnological production processes, where high cell densities and product titers are aspired. Several studies indicated that increased osmolarity of the growth medium can have a beneficial effect on recombinant protein production in different host organisms. Thus, the effect of osmolarity on the cellular physiology of Pichia pastoris, a prominent host for recombinant protein production, was studied in carbon limited chemostat cultures at different osmolarities. Transcriptome and proteome analyses were applied to assess differences upon growth at different osmolarities in both, a wild type strain and an antibody fragment expressing strain. While our main intention was to analyze the effect of different osmolarities on P. pastoris in general, this was complemented by studying it in context with recombinant protein production. In contrast to the model yeast Saccharomyces cerevisiae, the main osmolyte in P. pastoris was arabitol rather than glycerol, demonstrating differences in osmotic stress response as well as energy metabolism. 2D Fluorescence Difference Gel electrophoresis and microarray analysis were applied and demonstrated that processes such as protein folding, ribosome biogenesis and cell wall organization were affected by increased osmolarity. These data indicated that upon increased osmolarity less adaptations on both the transcript and protein level occurred in a P. pastoris strain, secreting the Fab fragment, compared with the wild type strain. No transcriptional activation of the high osmolarity glycerol (HOG) pathway was observed at steady state conditions. Furthermore, no change of the specific productivity of recombinant Fab was observed at increased osmolarity. These data point out that the physiological response to increased osmolarity is different to S. cerevisiae. Increased osmolarity resulted in an unfolded protein response (UPR) like response in P. pastoris and lead to pre-conditioning of the recombinant Fab producing strain of P. pastoris to growth at high osmolarity. The current data demonstrate a strong similarity of environmental stress response mechanisms and recombinant protein related stresses. Therefore, these results might be used in future strain and bioprocess engineering of this biotechnologically relevant yeast.

83 citations

Journal ArticleDOI
TL;DR: The identification, cloning, and functional characterization of the cholesterol-α-glucosyltransferase from H. pylori is reported, and it is revealed that the enzyme represents a membrane-bound, UDP- glucose-dependent cholesterol- α-glUCosyl transferase.

83 citations

Journal ArticleDOI
TL;DR: A novel and robust recombinant Pichia pastoris yeast whole cell catalyst with functional intracellular expression of Thermomyces lanuginosus lipase with better catalytic performance than Lipozyme TLIM with respect to biodiesel yield and productivity is suggested, thus suggesting a promising cost-effective biocatalyst for biodiesel production.

83 citations

Journal ArticleDOI
TL;DR: The viability was similar, about 90–95%, in both process types, but the amount of total proteins released in the medium was much less in the OLFB processes resulting in substantially higher specific enzyme purity for input to the downstream processing.
Abstract: An oxygen-limited fed-batch technique (OLFB) was compared to traditional methanol-limited fed-batch technique (MLFB) for the production of recombinant Thai Rosewood β-glucosidase with Pichia pastoris. The degree of energy limitation, expressed as the relative rate of respiration (q O/q O,max), was kept similar in both the types of processes. Due to the higher driving force for oxygen transfer in the OLFB, the oxygen and methanol consumption rates were about 40% higher in the OLFB. The obligate aerobe P. pastoris responded to the severe oxygen limitation mainly by increased maintenance demand, measured as increased carbon dioxide production per methanol, but still somewhat higher cell density (5%) and higher product concentrations (16%) were obtained. The viability was similar, about 90–95%, in both process types, but the amount of total proteins released in the medium was much less in the OLFB processes resulting in substantially higher (64%) specific enzyme purity for input to the downstream processing.

83 citations

Journal ArticleDOI
18 Mar 1997-Gene
TL;DR: An immunological based filter screening method that rapidly detects transformants secreting large amounts of a heterologous protein is developed and applied to the expression of a soluble trimeric form of CD40L, a molecule that regulates B-cell responses.

83 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
2023150
2022340
2021255
2020303
2019374
2018401