A transgenic zebrafish for spatiotemporal optogenetic activation of FGF/ERK signaling

Dynamic fibroblast growth factor (FGF)/extracellular signal-regulated kinase (ERK) signaling plays key roles in development, regeneration, and disease. We recently developed a zebrafish-optimized optogenetic tool, bOpto-FGF, that enables reversible activation of FGF/ERK signaling in response to blue light (∼455 nm) by fusing a zebrafish receptor tyrosine kinase domain to a blue-light-dimerizing light oxygen voltage-sensing domain. Previously, this tool was introduced into zebrafish embryos by mRNA injection. Here, we develop Tg(ubi:bOpto-FGF), a novel transgenic zebrafish ubiquitously expressing bOpto-FGF, to streamline experimental workflows. We demonstrate robust blue-light-mediated activation of FGF/ERK signaling and FGF target gene expression in early gastrulation-stage Tg(ubi:bOpto-FGF) embryos. Light-mediated signaling activation at this stage is more spatially uniform in transgenics compared to mRNA-injected embryos, and ectopic signaling in response to continuous light exposure is activated within 3 min and maintained for at least 75 min. Furthermore, Tg(ubi:bOpto-FGF) heterozygotes are light responsive from late blastula stages through at least 24 h postfertilization. Finally, we demonstrate light-mediated spatially localized FGF/ERK signaling activation within 1 min in the head, trunk, and tail at 1 day postfertilization. This transgenic line provides a powerful and convenient new strategy for spatiotemporal manipulation of FGF/ERK signaling in the vertebrate zebrafish model.

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Publication Details

Journal
Biology Open
Published
2026-09-09
DOI
https://doi.org/10.1242/bio.062695
Primary Topic
Zebrafish Biomedical Research Applications
Type
article
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article

A transgenic zebrafish for spatiotemporal optogenetic activation of FGF/ERK signaling

Julia Porcino, Leanne E. Iannucci, Ninet Sinaii, Katherine W. Rogers et al.
Biology Open
Zebrafish Biomedical Research Applications
article

A transgenic zebrafish for spatiotemporal optogenetic activation of FGF/ERK signaling

Julia Porcino, Leanne E. Iannucci, Ninet Sinaii, Katherine W. Rogers, William K Anderson
article en

Abstract

Dynamic fibroblast growth factor (FGF)/extracellular signal-regulated kinase (ERK) signaling plays key roles in development, regeneration, and disease. We recently developed a zebrafish-optimized optogenetic tool, bOpto-FGF, that enables reversible activation of FGF/ERK signaling in response to blue light (∼455 nm) by fusing a zebrafish receptor tyrosine kinase domain to a blue-light-dimerizing light oxygen voltage-sensing domain. Previously, this tool was introduced into zebrafish embryos by mRNA injection. Here, we develop Tg(ubi:bOpto-FGF), a novel transgenic zebrafish ubiquitously expressing bOpto-FGF, to streamline experimental workflows. We demonstrate robust blue-light-mediated activation of FGF/ERK signaling and FGF target gene expression in early gastrulation-stage Tg(ubi:bOpto-FGF) embryos. Light-mediated signaling activation at this stage is more spatially uniform in transgenics compared to mRNA-injected embryos, and ectopic signaling in response to continuous light exposure is activated within 3 min and maintained for at least 75 min. Furthermore, Tg(ubi:bOpto-FGF) heterozygotes are light responsive from late blastula stages through at least 24 h postfertilization. Finally, we demonstrate light-mediated spatially localized FGF/ERK signaling activation within 1 min in the head, trunk, and tail at 1 day postfertilization. This transgenic line provides a powerful and convenient new strategy for spatiotemporal manipulation of FGF/ERK signaling in the vertebrate zebrafish model.

Biology OpenVol. 15(9)
National Institute of Biomedical Imaging and Bioengineering (US), Eunice Kennedy Shriver National Institute of Child Health and Human Development (US), National Institutes of Health Clinical Center (US)
Openalex Percentile: Top 14%
Zebrafish Biomedical Research Applications
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