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Advances in Applied Microbiology|March 4, 2014
Bioprospecting in the genomic ageMichael A Hicks, Kristala L J PratherBiotechnology Journal|June 18, 2016
Porting the synthetic D-glucaric acid pathway from Escherichia coli to Saccharomyces cerevisiaeAmita Gupta, Michael A Hicks, Shawn P Manchester, et al.Biotechnology and Bioengineering|June 8, 2018
Rational design of thiolase substrate specificity for metabolic engineering applicationsBrian M Bonk, Yekaterina Tarasova, Michael A Hicks, et al.Enzyme and Microbial Technology|September 11, 2020
Sequence-based bioprospecting of myo-inositol oxygenase (Miox) reveals new homologues that increase glucaric acid production in Saccharomyces cerevisiaeWesley Leoricy Marques, Lisa A Anderson, Luis Sandoval, et al.Metabolic Engineering|December 17, 2013
Improving D-glucaric acid production from myo-inositol in E. coli by increasing MIOX stability and myo-inositol transportEric Shiue, Kristala L J PratherCurrent Opinion in Chemical Biology|July 6, 2024
Strategies in engineering sustainable biochemical synthesis through microbial systemsYoseb Song, Kristala L J PratherMetabolic Engineering|January 7, 2024
Consistent biosynthesis of D-glycerate from variable mixed substratesCynthia Ni, Kristala L J PratherCurrent Opinion in Structural Biology|May 24, 2011
Microbial chemical factories: recent advances in pathway engineering for synthesis of value added chemicalsHimanshu Dhamankar, Kristala L J PratherMicrobial Cell Factories|February 13, 2020
Heterologous caffeic acid biosynthesis in Escherichia coli is affected by choice of tyrosine ammonia lyase and redox partners for bacterial Cytochrome P450Kristina Haslinger, Kristala L J PratherACS Synthetic Biology|August 29, 2019
Development of a Vanillate Biosensor for the Vanillin Biosynthesis Pathway in E. coliAditya M Kunjapur, Kristala L J PratherPageof 9