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Sophie Claire De Valk
Sophie Claire De Valk
Fermentation scientist, dsm-firmenich
在 dsm-firmenich.com 的电子邮件经过验证
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引用次数
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Fermentation of glucose-xylose-arabinose mixtures by a synthetic consortium of single-sugar-fermenting Saccharomyces cerevisiae strains
MD Verhoeven, SC de Valk, JMG Daran, AJA van Maris, JT Pronk
FEMS yeast research 18 (8), foy075, 2018
522018
Carbon dioxide fixation via production of succinic acid from glycerol in engineered Saccharomyces cerevisiae
Z Malubhoy, FM Bahia, SC de Valk, E de Hulster, T Rendulić, JPR Ortiz, ...
Microbial Cell Factories 21 (1), 102, 2022
282022
Pathway engineering strategies for improved product yield in yeast-based industrial ethanol production
ACA van Aalst, SC de Valk, WM van Gulik, MLA Jansen, JT Pronk, ...
Synthetic and systems biotechnology 7 (1), 554-566, 2022
282022
Engineering proton-coupled hexose uptake in Saccharomyces cerevisiae for improved ethanol yield
SC De Valk, SE Bouwmeester, E De Hulster, R Mans
Biotechnology for Biofuels and Bioproducts 15 (1), 47, 2022
142022
Evolutionary engineering reveals amino acid substitutions in Ato2 and Ato3 that allow improved growth of Saccharomyces cerevisiae on lactic acid
N Baldi, SC De Valk, M Sousa-Silva, M Casal, I Soares-Silva, R Mans
FEMS Yeast Research 21 (4), foab033, 2021
112021
Energy coupling of membrane transport and efficiency of sucrose dissimilation in yeast
RK Henderson, SC de Valk, B Poolman, R Mans
Metabolic Engineering 65, 243-254, 2021
52021
Novel Evolutionary Engineering Approach to Alter Substrate Specificity of Disaccharide Transporter Mal11 in Saccharomyces cerevisiae
SC de Valk, R Mans
Journal of Fungi 8 (4), 358, 2022
12022
Energy coupling of metabolite transport in Saccharomyces cerevisiae
SC de Valk
2022
Evolutionary engineering for lactic acid uptake reveals key amino acid residues involved in substrate specificity of Saccharomycescerevisiae carboxylic acid transporters
N Baldi, S de Valk, M Sousa-Silva, M Casal, I Soares-Silva, R Mans, ...
Exploration and engineering of acetyl-CoA and succinyl-CoA metabolism in …, 0
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