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Science (New York, N.Y.)|October 4, 2014
Biofuels. Engineering alcohol tolerance in yeastFelix H Lam, Adel Ghaderi, Gerald R Fink, et al.Methods in Enzymology|October 16, 2010
Enhancing stress resistance and production phenotypes through transcriptome engineeringFelix H Lam, Franz S Hartner, Gerald R Fink, et al.Nature Biotechnology|April 8, 2014
Microfluidic high-throughput culturing of single cells for selection based on extracellular metabolite production or consumptionBenjamin L Wang, Adel Ghaderi, Hang Zhou, et al.Science Advances|June 26, 2021
Engineered yeast tolerance enables efficient production from toxified lignocellulosic feedstocksFelix H Lam, Burcu Turanlı-Yıldız, Dany Liu, et al.Nature Biotechnology|February 19, 2013
Compartmentalization of metabolic pathways in yeast mitochondria improves the production of branched-chain alcoholsJosé L Avalos, Gerald R Fink, Gregory StephanopoulosMetabolic Engineering|October 1, 2018
Biosynthesis of monoethylene glycol in Saccharomyces cerevisiae utilizing native glycolytic enzymesBoonsom Uranukul, Benjamin M Woolston, Gerald R Fink, et al.Science (New York, N.Y.)|December 13, 2006
Engineering yeast transcription machinery for improved ethanol tolerance and productionHal Alper, Joel Moxley, Elke Nevoigt, et al.Metabolic Engineering|August 28, 2012
Xylose isomerase overexpression along with engineering of the pentose phosphate pathway and evolutionary engineering enable rapid xylose utilization and ethanol production by Saccharomyces cerevisiaeHang Zhou, Jing-Sheng Cheng, Benjamin L Wang, et al.Cell Systems|November 18, 2019
Critical Roles of the Pentose Phosphate Pathway and GLN3 in Isobutanol-Specific Tolerance in YeastKouichi Kuroda, Sarah K Hammer, Yukio Watanabe, et al.Science (New York, N.Y.)|February 10, 2007
Challenges in engineering microbes for biofuels productionGregory StephanopoulosPageof 31