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ACS Synthetic Biology|July 12, 2013
Randomized BioBrick assembly: a novel DNA assembly method for randomizing and optimizing genetic circuits and metabolic pathwaysSean C Sleight, Herbert M SauroPhysiological and Biochemical Zoology : PBZ|May 18, 2007
Evolutionary adaptation to freeze-thaw-growth cycles in Escherichia coliSean C Sleight, Richard E LenskiMethods in Molecular Biology (Clifton, N.J.)|September 3, 2013
BioBrick™ assembly using the In-Fusion PCR Cloning KitSean C Sleight, Herbert M SauroACS Synthetic Biology|September 6, 2013
Visualization of evolutionary stability dynamics and competitive fitness of Escherichia coli engineered with randomized multigene circuitsSean C Sleight, Herbert M SauroNucleic Acids Research|October 25, 2012
Rationally designed bidirectional promoter improves the evolutionary stability of synthetic genetic circuitsSong Yang, Sean C Sleight, Herbert M SauroBMC Evolutionary Biology|December 7, 2006
Increased susceptibility to repeated freeze-thaw cycles in Escherichia coli following long-term evolution in a benign environmentSean C Sleight, Nicholas S Wigginton, Richard E LenskiGenetics|September 2, 2008
Genetic basis of evolutionary adaptation by Escherichia coli to stressful cycles of freezing, thawing and growthSean C Sleight, Christian Orlic, Dominique Schneider, et al.Journal of Biological Engineering|November 3, 2010
Designing and engineering evolutionary robust genetic circuitsSean C Sleight, Bryan A Bartley, Jane A Lieviant, et al.Nucleic Acids Research|April 14, 2010
In-Fusion BioBrick assembly and re-engineeringSean C Sleight, Bryan A Bartley, Jane A Lieviant, et al.Metabolic Engineering|May 26, 2012
Computational tools for metabolic engineeringWilbert B Copeland, Bryan A Bartley, Deepak Chandran, et al.Pageof 1