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Sebastian Wenk

Showing results (1-10 of 10) with videos related to

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Methods in Enzymology|September 4, 2018
An Engineering Approach for Rewiring Microbial MetabolismSebastian Wenk, Oren Yishai, Steffen N Lindner, et al.
Metabolic Engineering|February 22, 2023
Paving the way for synthetic C1 - Metabolism in Pseudomonas putida through the reductive glycine pathwayLyon Bruinsma, Sebastian Wenk, Nico J Claassens, et al.
Nature Chemical Biology|February 12, 2020
Growth of E. coli on formate and methanol via the reductive glycine pathwaySeohyoung Kim, Steffen N Lindner, Selçuk Aslan, et al.
Biotechnology and Bioengineering|July 14, 2020
An "energy-auxotroph" Escherichia coli provides an in vivo platform for assessing NADH regeneration systemsSebastian Wenk, Karin Schann, Hai He, et al.
Mbio|August 18, 2025
Synthetic C<sub>1</sub> metabolism in <i>Pseudomonas putida</i> enables strict formatotrophy and methylotrophy via the reductive glycine pathwayJustine Turlin, Maria V G Alván-Vargas, Òscar Puiggené, et al.
Metabolic Engineering|October 17, 2025
Evolution-assisted engineering of formate assimilation via the formyl phosphate route in Escherichia coliJenny Bakker, Maximilian Boinot, Karin Schann, et al.
Metabolic Engineering|October 24, 2024
Evolution-assisted engineering of E. coli enables growth on formic acid at ambient CO<sub>2</sub> via the Serine Threonine CycleSebastian Wenk, Vittorio Rainaldi, Karin Schann, et al.
Advances in Biochemical Engineering/Biotechnology|April 2, 2022
Engineering the Reductive Glycine Pathway: A Promising Synthetic Metabolism Approach for C1-AssimilationNico J Claassens, Ari Satanowski, Viswanada R Bysani, et al.
Microbial Biotechnology|July 20, 2024
Design, construction and optimization of formaldehyde growth biosensors with broad application in biotechnologyKarin Schann, Jenny Bakker, Maximilian Boinot, et al.
Nature Communications|May 10, 2023
Engineering a new-to-nature cascade for phosphate-dependent formate to formaldehyde conversion in vitro and in vivoMaren Nattermann, Sebastian Wenk, Pascal Pfister, et al.
Pageof 1

Showing results (1-10 of 10) with videos related to

Sort By:
Pageof 1
Methods in Enzymology|September 4, 2018
An Engineering Approach for Rewiring Microbial MetabolismSebastian Wenk, Oren Yishai, Steffen N Lindner, et al.
Metabolic Engineering|February 22, 2023
Paving the way for synthetic C1 - Metabolism in Pseudomonas putida through the reductive glycine pathwayLyon Bruinsma, Sebastian Wenk, Nico J Claassens, et al.
Nature Chemical Biology|February 12, 2020
Growth of E. coli on formate and methanol via the reductive glycine pathwaySeohyoung Kim, Steffen N Lindner, Selçuk Aslan, et al.
Biotechnology and Bioengineering|July 14, 2020
An "energy-auxotroph" Escherichia coli provides an in vivo platform for assessing NADH regeneration systemsSebastian Wenk, Karin Schann, Hai He, et al.
Mbio|August 18, 2025
Synthetic C<sub>1</sub> metabolism in <i>Pseudomonas putida</i> enables strict formatotrophy and methylotrophy via the reductive glycine pathwayJustine Turlin, Maria V G Alván-Vargas, Òscar Puiggené, et al.
Metabolic Engineering|October 17, 2025
Evolution-assisted engineering of formate assimilation via the formyl phosphate route in Escherichia coliJenny Bakker, Maximilian Boinot, Karin Schann, et al.
Metabolic Engineering|October 24, 2024
Evolution-assisted engineering of E. coli enables growth on formic acid at ambient CO<sub>2</sub> via the Serine Threonine CycleSebastian Wenk, Vittorio Rainaldi, Karin Schann, et al.
Advances in Biochemical Engineering/Biotechnology|April 2, 2022
Engineering the Reductive Glycine Pathway: A Promising Synthetic Metabolism Approach for C1-AssimilationNico J Claassens, Ari Satanowski, Viswanada R Bysani, et al.
Microbial Biotechnology|July 20, 2024
Design, construction and optimization of formaldehyde growth biosensors with broad application in biotechnologyKarin Schann, Jenny Bakker, Maximilian Boinot, et al.
Nature Communications|May 10, 2023
Engineering a new-to-nature cascade for phosphate-dependent formate to formaldehyde conversion in vitro and in vivoMaren Nattermann, Sebastian Wenk, Pascal Pfister, et al.
Pageof 1