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Nature Chemical Biology|July 22, 2009
Directed evolution drives the next generation of biocatalystsNicholas J TurnerChemistry (Weinheim an Der Bergstrasse, Germany)|December 16, 2015
InspIRED by Nature: NADPH-Dependent Imine Reductases (IREDs) as Catalysts for the Preparation of Chiral AminesGideon Grogan, Nicholas J TurnerChemical Communications (Cambridge, England)|October 29, 2014
Artificial concurrent catalytic processes involving enzymesValentin Köhler, Nicholas J TurnerOrganic Letters|February 6, 2008
Copper-catalyzed synthesis of enantioenriched tetraarylethanesWendy S Jen, Matthew D Truppo, Deborah Amos, et al.Bioorganic & Medicinal Chemistry|July 20, 2014
Bacterial Anabaena variabilis phenylalanine ammonia lyase: a biocatalyst with broad substrate specificitySarah L Lovelock, Nicholas J TurnerChemical Communications (Cambridge, England)|July 18, 2002
Deracemisation and stereoinversion of alpha-amino acids using D-amino acid oxidase and hydride reducing agentsTimothy M Beard, Nicholas J TurnerOrganic Letters|February 25, 2005
Microwave-assisted sequential amide bond formation and intramolecular amidation: a rapid entry to functionalized oxindolesRajamohan R Poondra, Nicholas J TurnerOrganic & Biomolecular Chemistry|December 20, 2003
Directed evolution of enzymes: new biocatalysts for asymmetric synthesisMarina Alexeeva, Reuben Carr, Nicholas J TurnerACS Synthetic Biology|May 22, 2018
"Site and Mutation"-Specific Predictions Enable Minimal Directed Evolution LibrariesJeffrey C Moore, Agustina Rodriguez-Granillo, Alejandro Crespo, et al.Pageof 20