Search bioRxiv⌕ Search

Biology subjects

van der Hoek, S. A.

Publications and source records attributed to van der Hoek, S. A..

2 recordsLinked to original sources

DropletFactory CORE - a droplet cytometry and sorting platform for fast and accessible screening in biotechnology

Droplet sorting technology has the potential to revolutionize the biotechnology sector as it provides massive high-throughput screening capacity, but the technology remains not accessible for a wider audience yet. There is a need for more affordable droplet sorting platforms to design cell factories and screen cell libraries. In here we demonstrate our droplet cytometry/sorter platform for single-cell screening of yeast cells based on their fluorescence signal.

microbiology↗

Engineering the yeast Saccharomyces cerevisiae for the production of L-(+)-ergothioneine

L-(+)-Ergothioneine is an unusual, naturally occurring antioxidant nutraceutical that has been shown to help reduce cellular oxidative damage. Humans do not biosynthesise it, so can acquire it only from their diet; it exploits a specific transporter (SLC22A4) for its uptake. ERG is considered to be a nutraceutical and possible vitamin that is involved in the maintenance of health, and seems to be at too low a concentration in several diseases in vivo. Ergothioneine is thus a potentially useful dietary supplement. Present methods of commercial production rely on extraction from natural sources or on chemical synthesis. Here we describe the engineering of the bakers yeast Saccharomyces cerevisiae to produce ergothioneine by fermentation in defined media. After integrating combinations of ERG biosynthetic pathways from different organisms, we screened yeast strains for their production of ERG. The highest-producing strain was also engineered with known ergothioneine transporters. The effect of amino acid supplementation of the medium was investigated and the nitrogen metabolism of S. cerevisiae was altered by knock-out of TOR1 or YIH1. We also optimized the media composition using fractional factorial methods. Our optimal strategy led to a titer of 598 {+/-} 18 mg/L ergothioneine in fed-batch culture in bioreactors. Because S. cerevisiae is a GRAS ( generally recognised as safe) organism that is widely used for nutraceutical production, this work provides a promising process for the biosynthetic production of ERG.

bioengineering↗