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Molecular Biosystems|August 12, 2016
Integrative analysis of human omics data using biomolecular networksJonathan L Robinson, Jens NielsenProceedings of the National Academy of Sciences of the United States of America|March 9, 2016
Discovery and dissection of metabolic oscillations in the microaerobic nitric oxide response network of Escherichia coliJonathan L Robinson, Mark P BrynildsenBioengineering (Basel, Switzerland)|September 28, 2017
Construction and Experimental Validation of a Quantitative Kinetic Model of Nitric Oxide Stress in Enterohemorrhagic Escherichia coli O157:H7Jonathan L Robinson, Mark P BrynildsenPlos Computational Biology|May 10, 2013
A kinetic platform to determine the fate of nitric oxide in Escherichia coliJonathan L Robinson, Mark P BrynildsenMetabolic Engineering|June 27, 2015
An ensemble-guided approach identifies ClpP as a major regulator of transcript levels in nitric oxide-stressed Escherichia coliJonathan L Robinson, Mark P BrynildsenJournal of Computational Chemistry|October 7, 2010
Rapid estimation of activation enthalpies for cytochrome-P450-mediated hydroxylationsArthur N Mayeno, Jonathan L Robinson, Brad ReisfeldMetabolic Engineering Communications|June 21, 2021
Model-driven identification of dosing regimens that maximize the antimicrobial activity of nitric oxideJonathan L Robinson, Richard V Miller, Mark P BrynildsenCell Reports|March 7, 2019
A Systematic Investigation of the Malignant Functions and Diagnostic Potential of the Cancer SecretomeJonathan L Robinson, Amir Feizi, Mathias Uhlén, et al.Current Opinion in Microbiology|July 2, 2014
Deciphering nitric oxide stress in bacteria with quantitative modelingJonathan L Robinson, Kristin J Adolfsen, Mark P BrynildsenProceedings of the National Academy of Sciences of the United States of America|February 5, 2024
Brain energy metabolism is optimized to minimize the cost of enzyme synthesis and transportJohan Gustafsson, Jonathan L Robinson, Henrik Zetterberg, et al.Pageof 3