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Methods in Molecular Biology (Clifton, N.J.)|December 10, 2014
Using computational modeling and experimental synthetic perturbations to probe biological circuitsJoshua R Porter, Eric BatchelorJournal of Visualized Experiments : Jove|March 14, 2017
Single-cell Gene Expression Profiling Using FACS and qPCR with Internal StandardsJoshua R Porter, William G Telford, Eric BatchelorCell Systems|May 3, 2016
p53 Pulses Diversify Target Gene Expression Dynamics in an mRNA Half-Life-Dependent Manner and Delineate Co-regulated Target Gene SubnetworksJoshua R Porter, Brian E Fisher, Eric BatchelorThe Journal of Cell Biology|February 13, 2019
Protein stability of p53 targets determines their temporal expression dynamics in response to p53 pulsingRyan L Hanson, Joshua R Porter, Eric BatchelorScientific Reports|April 14, 2019
Tuning of mRNA stability through altering 3'-UTR sequences generates distinct output expression in a synthetic circuit driven by p53 oscillationsWoo Seuk Koh, Joshua R Porter, Eric BatchelorCurrent Opinion in Systems Biology|October 25, 2017
Recent progress and open challenges in modeling p53 dynamics in single cellsEric Batchelor, Alexander LoewerMolecular Microbiology|March 24, 2006
Imaging OmpR localization in Escherichia coliEric Batchelor, Mark GoulianProceedings of the National Academy of Sciences of the United States of America|January 11, 2003
Robustness and the cycle of phosphorylation and dephosphorylation in a two-component regulatory systemEric Batchelor, Mark GoulianCell Reports|October 14, 2020
Rucaparib Treatment Alters p53 Oscillations in Single Cells to Enhance DNA-Double-Strand-Break-Induced Cell Cycle ArrestRyan L Hanson, Eric BatchelorMolecular Cell|September 5, 2017
Global Inhibition with Specific Activation: How p53 and MYC Redistribute the Transcriptome in the DNA Double-Strand Break ResponseJoshua R Porter, Brian E Fisher, Laura Baranello, et al.Pageof 6