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ACS Catalysis|July 23, 2021
A Growth-Based, High-Throughput Selection Platform Enables Remodeling of 4-Hydroxybenzoate Hydroxylase Active SiteSarah Maxel, Derek Aspacio, Edward King, et al.Microbial Cell Factories|July 29, 2020
Metabolic engineering of Escherichia coli for optimized biosynthesis of nicotinamide mononucleotide, a noncanonical redox cofactorWilliam B Black, Derek Aspacio, Danielle Bever, et al.ACS Synthetic Biology|September 1, 2021
Growth-Based, High-Throughput Selection for NADH Preference in an Oxygen-Dependent BiocatalystSarah Maxel, Samer Saleh, Edward King, et al.ACS Catalysis|August 25, 2023
Engineering Embden-Meyerhof-Parnas Glycolysis to Generate Noncanonical Reducing PowerEdward King, Youtian Cui, Derek Aspacio, et al.Biorxiv : the Preprint Server for Biology|September 11, 2023
Shifting Redox Reaction Equilibria on Demand Using an Orthogonal Redox CofactorDerek Aspacio, Yulai Zhang, Youtian Cui, et al.ACS Catalysis|July 30, 2025
Engineering <i>Escherichia coli</i> Pyruvate Metabolism to Generate Noncanonical Reducing PowerDerek Aspacio, Emma Luu, Suphanida Worakaensai, et al.Nature Chemical Biology|August 13, 2024
Shifting redox reaction equilibria on demand using an orthogonal redox cofactorDerek Aspacio, Yulai Zhang, Youtian Cui, et al.Pageof 1