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Methods in Molecular Biology (Clifton, N.J.)|July 8, 2026
Characterizing Optogenetic Tools for Use in Synthetic Gene CircuitsTimothy H Wakiyama, Megan N McCleanProceedings of the 7Th ACM International Conference on Nanoscale Computing and Communication : Virtual Conference, September 23-25, 2020 : Nanocom 2020. ACM International Conference on Nanoscale Computing and Communication (7Th : 2020 :|April 15, 2022
<i>Shining light</i> on molecular communicationBhuvana Krishnaswamy, Megan N McCleanCell Reports|April 23, 2023
Transcription factor localization dynamics and DNA binding drive distinct promoter interpretationsKieran Sweeney, Megan N McCleanACS Synthetic Biology|July 11, 2023
Lustro: High-Throughput Optogenetic Experiments Enabled by Automation and a Yeast Optogenetic ToolkitZachary P Harmer, Megan N McCleanCell Systems|May 19, 2022
Evaluation of Benzinger et al.: Optogenetic circuits for dynamic signal processingZachary P Harmer, Megan N McCleanMethods in Molecular Biology (Clifton, N.J.)|December 26, 2024
The Yeast Optogenetic Toolkit (yOTK) for Spatiotemporal Control of Gene Expression in Budding YeastZachary P Harmer, Megan N McCleanBiorxiv : the Preprint Server for Biology|September 25, 2023
Tuning Interdomain Conjugation Toward <i>in situ</i> Population Modification in YeastKevin R Stindt, Megan N McCleanJournal of Visualized Experiments : Jove|March 14, 2017
Design and Implementation of an Automated Illuminating, Culturing, and Sampling System for Microbial Optogenetic ApplicationsCameron J Stewart, Megan N McCleanMsystems|May 15, 2024
Tuning interdomain conjugation to enable <i>in situ</i> population modification in yeastsKevin R Stindt, Megan N McCleanBiorxiv : the Preprint Server for Biology|April 17, 2023
Lustro: High-throughput optogenetic experiments enabled by automation and a yeast optogenetic toolkitZachary P Harmer, Megan N McCleanPageof 4