Projects per year
Description
Supplementary files of research article "High throughput 13C-metabolic flux analysis of 3-hydroxypropionic acid producing Pichia pastoris reveals limited availability of acetyl-CoA and ATP due to tight control of the glycolytic flux ". This research paper describes the fluxome of 3-hydroxypropionic acid producing Pichia pastoris recombinant strains. Glycerol was used as a sole carbon source. A High Throughput platform was used to simultaneously characterize the fluxome of 10 recombinant strains at pH 5 and 6 recombinant strains at pH 3.5. All the experiments were carried in triplicates. To determine the intracellular fluxes, stationary 13C-Metabolic Flux Analysis was used using the data of the isotopologue distribution of the proteinogenic amino acids. The files attached herein contain: the description of how to obtain the models used for this study, the raw data obtained from the mini-bioreactor cultivations, the files to process the raw data, and the results (bioprocess parameters and fluxes from 13C-Metabolic flux analysis and Flux Balance Analysis).
Date made available | 6 Mar 2023 |
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Publisher | CORA.Repositori de Dades de Recerca |
Date of data production | 1 Sept 2020 - 23 Dec 2021 |
Projects
- 1 Finished
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ENABLING PICHIA PASTORIS AS A CELL FACTORY FOR CONTINUOUS BIOMANUFACTURING OF CHEMICALS AND RECOMBINANT PROTEINS. DEVELOPING AN INTEGRATED PLATFORM FOR SUSTAINABLE INDUSTRIAL BIOTECHNOLOGY
Valero Barranco, F., Ferrer Alegre, P., Avila Cabre, S., Barrero Peña, J. J., Fina Romero, A., Garrigos Martinez, J., Gasset Franch, A., Lopez Fernandez, J., Albiol Sala, J., Benaiges Massa, M. D., Garcia-Ortega, X., Montesinos Segui, J. L. & Sales Vallverdu, A.
1/06/20 → 31/05/23
Project: Research Projects and Other Grants
Research output
- 1 Article
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High throughput 13C-metabolic flux analysis of 3-hydroxypropionic acid producing Pichia pastoris reveals limited availability of acetyl-CoA and ATP due to tight control of the glycolytic flux
Fina, A., Millard, P., Albiol, J., Ferrer, P. & Heux, S., 29 Jun 2023, In: Microbial Cell Factories. 22, 1, 16 p., 117.Research output: Contribution to journal › Article › Research › peer-review
Open Access2 Downloads (Pure)