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Updated: Apr 12, 2026

Reliably Engineering and Controlling Stable Optogenetic Gene Circuits in Mammalian Cells
Published on: July 6, 2021
LOV-based optogenetic devices: light-driven modules to impart photoregulated control of cellular signaling
Ashutosh Pudasaini1, Kaley K El-Arab1, Brian D Zoltowski1
1Department of Chemistry, Center for Drug Discovery, Design and Delivery at Dedman College, Southern Methodist University Dallas, TX, USA.
Abstract:
The Light-Oxygen-Voltage domain family of proteins is widespread in biology where they impart sensory responses to signal transduction domains. The small, light responsive LOV modules offer a novel platform for the construction of optogenetic tools. Currently, the design and implementation of these devices is partially hindered by a lack of understanding of how light drives allosteric changes in protein conformation to activate diverse signal transduction domains. Further, divergent photocycle properties amongst LOV family members complicate construction of highly sensitive devices with fast on/off kinetics. In the present review we discuss the history of LOV domain research with primary emphasis on tuning LOV domain chemistry and signal transduction to allow for improved optogenetic tools.
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