The synergetic effect from the combination of different adsorption resins in batch and semi-continuous cultivations of S. cerevisiae cell factories to produce acetylated Taxanes precursors of the anticancer drug Taxol
Santoyo-Garcia, J. H.; Walls, L. E.; Valdivia-Cabrera, M.; Malci, K.; Jonguitud-Borrego, N.; Halliday, K.; Rios Solis, L. R.
Show abstract
In situ product recovery is an efficient way to intensify bioprocesses as it can perform adsorption of the desired natural products in the cultivation. However, it is common to use only one adsorbent (liquid or solid) to perform the product recovery. For this study, the use of an in situ product recovery method with three combined commercial resins (HP-20, XAD7HP and HP-2MG) with different chemical properties was performed. A new yeast strain of Saccharomyces cerevisiae was engineered using CRISPR Cas9 (strain EJ2) to deliver heterologous expression of oxygenated acetylated taxanes that are precursors of the anticancer drug Taxol (R) (paclitaxel). Microscale cultivations using a definitive screening design (DSD) were set to get the best resin combinations and concentrations to retrieve high taxane titers. Once the best resin treatment was selected by the DSD, semi-continuous cultivation in high throughput microscale was performed to increase the total taxanes yield up to 783 {+/-} 33 mg/L. The best T5-yl Acetate yield obtained was up to 95 {+/-} 4 mg/L, the highest titer of this compound ever reported by a heterologous expression. It was also observed that by using a combination of the resins in the cultivation, 8 additional uncharacterized taxanes were found in the gas chromatograms compared to the dodecane overlay method. Lastly, the cell-waste reactive oxygen species concentrations from the yeast were 1.5-fold lower in the resins treatment compared to the control with no adsorbent aid. The possible future implications of this method could be critical for bioprocess intensification, allowing the transition to a semi-continuous flow bioprocess. Further, this new methodology broadens the use of different organisms for natural product synthesis/discovery benefiting from clear bioprocess intensification advantages.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Probing Specificities of Alcohol Acyltransferases for Designer Ester Biosynthesis with a High-Throughput Microbial Screening Platform 94%
- Microfluidic single-cell scale-down bioreactors: A proof-of-concept for the growth of Corynebacterium glutamicum at oscillating pH values 93%
- Modular development enables rapid design of media for alternative hosts 92%
Similar papers in this journal
- Low cost and sustainable hyaluronic acid production in a manufacturing platform based on Bacillus subtilis 3NA strain 95%
- Operational and biochemical aspects of co-digestion (co-AD) from sugarcane vinasse, filter cake and deacetylation liquor 94%
- Co-utilization of microalgae and heterotrophic microorganisms improves wastewater treatment efficiency 93%
Similar papers in this journal
- Further biochemical profiling of Hypholoma fasciculare metabolome reveals its chemo-genetic diversity 93%
- Engineering the yeast Saccharomyces cerevisiae for the production of L-(+)-ergothioneine 92%
- Process engineering of biopharmaceutical production in moss bioreactors via model-based description and evaluation of phytohormone impact 92%
Similar papers in this journal
- Effect of concentration and hydraulic reaction time on the removal of pharmaceutical compounds in a membrane bioreactor inoculated with activated sludge 94%
- Biochemical Upcycling of PET via Glycolysis and Engineered Microbial Consortia 93%
- Biotransformation of 2,4-dinitrotoluene in a phototrophic co-culture of engineered Synechococcus elongatus and Pseudomonas putida 93%
Similar papers in this journal
- Effect of a Monascus sp. red yeast rice extract on germination of bacterial spores 95%
- Isolation, identification and selection of bacteria with the proof-of-concept for bioaugmentation of whitewater from woodfree paper mills 94%
- An open-source multiple-bioreactor system for replicable gas-fermentation experiments: Nitrate feed results in stochastic inhibition events, but improves ethanol production of Clostridium ljungdahlii with CO2 and H2 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.