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Metabolic Engineering|January 20, 2025
Unleashing the innate ability of Escherichia coli to produce D-AlloseBryant Luu, Dileep Sai Kumar Palur, Jayce E Taylor, et al.Metabolic Engineering|September 22, 2023
Electrical-biological hybrid system for carbon efficient isobutanol productionTanner R Treece, Santanu Pattanayak, Morgan M Matson, et al.Metabolic Engineering|December 12, 2025
Lacto-N-tetraose biosynthesis from lactose via metabolically rewired Escherichia coliDileep Sai Kumar Palur, Shannon R Pressley, Alex McGill, et al.Trends in Biotechnology|August 16, 2025
Microbial production of D-mannose and D-sedoheptulose with tunable ratiosDileep Sai Kumar Palur, Bryant Luu, Jayce E Taylor, et al.Current Opinion in Chemical Biology|September 11, 2016
Cyanobacterial metabolic engineering for biofuel and chemical productionNeal J Oliver, Christine A Rabinovitch-Deere, Austin L Carroll, et al.The Journal of General and Applied Microbiology|October 12, 2016
Directed evolution of the autoinducer selectivity of Vibrio fischeri LuxRYohei Tashiro, Yuki Kimura, Maiko Furubayashi, et al.Molecular Systems Biology|December 24, 2010
Evolution, genomic analysis, and reconstruction of isobutanol tolerance in Escherichia coliShota Atsumi, Tung-Yun Wu, Iara M P Machado, et al.Metabolic Engineering|November 11, 2021
Adaptive laboratory evolution for improved tolerance of isobutyl acetate in Escherichia coliMorgan M Matson, Mateo M Cepeda, Angela Zhang, et al.Biotechnology for Biofuels|July 23, 2016
Engineering xylose utilization in Yarrowia lipolytica by understanding its cryptic xylose pathwayGabriel M Rodriguez, Murtaza Shabbir Hussain, Lauren Gambill, et al.Metabolic Engineering|August 18, 2025
Retrofitting Escherichia coli for de novo production of rare L-sorbose from abundant D-glucoseJayce E Taylor, Trevor Gannalo, Bryant Luu, et al.Pageof 8