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Nature Communications|June 21, 2018
Improving formaldehyde consumption drives methanol assimilation in engineered E. coliBenjamin M Woolston, Jason R King, Michael Reiter, et al.ACS Synthetic Biology|April 5, 2017
Designing a New Entry Point into Isoprenoid Metabolism by Exploiting Fructose-6-Phosphate Aldolase Side Reactivity of Escherichia coliJason R King, Benjamin M Woolston, Gregory StephanopoulosAnnual Review of Chemical and Biomolecular Engineering|April 2, 2013
Metabolic engineering: past and futureBenjamin M Woolston, Steven Edgar, 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.Metabolic Engineering|June 16, 2018
Rediverting carbon flux in Clostridium ljungdahlii using CRISPR interference (CRISPRi)Benjamin M Woolston, David F Emerson, Devin H Currie, et al.ACS Synthetic Biology|March 12, 2019
Phage-Assisted Evolution of Bacillus methanolicus Methanol Dehydrogenase 2Timothy B Roth, Benjamin M Woolston, Gregory Stephanopoulos, et al.Biotechnology and Bioengineering|September 19, 2017
Development of a formaldehyde biosensor with application to synthetic methylotrophyBenjamin M Woolston, Timothy Roth, Ishwar Kohale, et al.F1000Research|April 16, 2016
Accessing Nature's diversity through metabolic engineering and synthetic biologyJason R King, Steven Edgar, Kangjian Qiao, et al.Biotechnology and Bioengineering|September 30, 2018
Enhancing hydrogen-dependent growth of and carbon dioxide fixation by Clostridium ljungdahlii through nitrate supplementationDavid F Emerson, Benjamin M Woolston, Nian Liu, et al.ACS Chemical Biology|December 19, 2015
Mechanistic Insights into Taxadiene Epoxidation by Taxadiene-5α-HydroxylaseSteven Edgar, Kang Zhou, Kangjian Qiao, et al.Pageof 32