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Rijksuniversiteit Groningenfounded in 1614  -  top 100 university
Over ons Praktische zaken Waar vindt u ons S. Wenk, PhD

Publicaties

Evolution-assisted engineering of formate assimilation via the formyl phosphate route in Escherichia coli

Designer-Mikroben für eine CO2-basierte Bioökonomie

Evolution-assisted engineering of E. coli enables growth on formic acid at ambient CO2 via the Serine Threonine Cycle

Synthetic C1 metabolism in Pseudomonas putida enables strict formatotrophy and methylotrophy via the reductive glycine pathway.

Design, construction and optimization of formaldehyde growth biosensors with broad application in biotechnology

Engineering a new-to-nature cascade for phosphate-dependent formate to formaldehyde conversion in vitro and in vivo

Paving the way for synthetic C1 - Metabolism in Pseudomonas putida through the reductive glycine pathway

Engineering the Reductive Glycine Pathway:: A Promising Synthetic Metabolism Approach for C1-Assimilation

Synthetic metabolism approaches: A valuable resource for systems biology

An “energy-auxotroph” Escherichia coli provides an in vivo platform for assessing NADH regeneration systems

Pers/media

Des matériaux bruts à partir de CO2

Ameisensäure im Fokus

Formiat effizient in Formaldehyd umwandeln

Spotlight on Formic Acid: converting formate into formaldehyde efficiently

Raw materials from CO2

Synthetic key enzyme enables conversion of CO2 into formic acid

Biotech-Team entwickelt robusten Schlüssel für CO2-Umwandlung

Neuer Stoffwechselweg wandelt CO2 in Rohstoffe um

Ameisensäure im Fokus