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Journal of Molecular Graphics & Modelling|August 15, 1998
Graphical visualization of mean hydration from molecular dynamics simulationsJ Pitera, P KollmanJournal of Biomolecular NMR|May 24, 2001
Assessing the effect of conformational averaging on the measured values of observablesR Bürgi, J Pitera, W F van GunsterenJournal of Medicinal Chemistry|March 12, 1999
Prediction of the binding free energies of new TIBO-like HIV-1 reverse transcriptase inhibitors using a combination of PROFEC, PB/SA, CMC/MD, and free energy calculationsM A Eriksson, J Pitera, P A KollmanApplied and Environmental Microbiology|March 18, 2008
Application of functional genomics to pathway optimization for increased isoprenoid productionLance Kizer, Douglas J Pitera, Brian F Pfleger, et al.Metabolic Engineering|January 24, 2007
Balancing a heterologous mevalonate pathway for improved isoprenoid production in Escherichia coliDouglas J Pitera, Chris J Paddon, Jack D Newman, et al.Nature Biotechnology|July 18, 2006
Combinatorial engineering of intergenic regions in operons tunes expression of multiple genesBrian F Pfleger, Douglas J Pitera, Christina D Smolke, et al.Metabolic Engineering|September 28, 2006
Microbial sensors for small molecules: development of a mevalonate biosensorBrian F Pfleger, Douglas J Pitera, Jack D Newman, et al.Nature Biotechnology|June 5, 2003
Engineering a mevalonate pathway in Escherichia coli for production of terpenoidsVincent J J Martin, Douglas J Pitera, Sydnor T Withers, et al.Proceedings of the National Academy of Sciences of the United States of America|January 17, 2012
Production of amorphadiene in yeast, and its conversion to dihydroartemisinic acid, precursor to the antimalarial agent artemisininPatrick J Westfall, Douglas J Pitera, Jacob R Lenihan, et al.Nature|April 12, 2013
High-level semi-synthetic production of the potent antimalarial artemisininC J Paddon, P J Westfall, D J Pitera, et al.Pageof 1