Optimized Gal4 genetics for permanent gene expression mapping in zebrafish
Top Cited Papers
- 11 August 2009
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 106 (32) , 13365-13370
- https://doi.org/10.1073/pnas.0903060106
Abstract
Combinatorial genetics for conditional transgene activation allows studying gene function with temporal and tissue specific control like the Gal4-UAS system, which has enabled sophisticated genetic studies in Drosophila . Recently this system was adapted for zebrafish and promising applications have been introduced. Here, we report a systematic optimization of zebrafish Gal4-UAS genetics by establishing an optimized Gal4-activator (KalTA4). We provide quantitative data for KalTA4-mediated transgene activation in dependence of UAS copy numbers to allow for studying dosage effects of transgene expression. Employing a Tol2 transposon-mediated KalTA4 enhancer trap screen biased for central nervous system expression, we present a collection of self-reporting red fluorescent KalTA4 activator strains. These strains reliably transactivate UAS-dependent transgenes and can be rendered homozygous. Furthermore, we have characterized the transactivation kinetics of tissue-specific KalTA4 activation, which led to the development of a self-maintaining effector strain “Kaloop.” This strain relates transient KalTA4 expression during embryogenesis via a KalTA4-mediated autoregulatory mechanism to live adult structures. We demonstrate its use by showing that the secondary octaval nucleus in the adult hindbrain is likely derived from egr2b -expressing cells in rhombomere 5 during stages of early embryogenesis. These data demonstrate prolonged and maintained expression by Kalooping, a technique that can be used for permanent spatiotemporal genetic fate mapping and targeted transgene expression in zebrafish.Keywords
This publication has 31 references indexed in Scilit:
- Temporally-Controlled Site-Specific Recombination in ZebrafishPLOS ONE, 2009
- Genetic dissection of neural circuits by Tol2 transposon-mediated Gal4 gene and enhancer trapping in zebrafishProceedings of the National Academy of Sciences, 2008
- Viral 2A peptides allow expression of multiple proteins from a single ORF in transgenic zebrafish embryosGenesis, 2007
- Targeting neural circuitry in zebrafish using GAL4 enhancer trappingNature Methods, 2007
- Transactivation from Gal4-VP16 transgenic insertions for tissue-specific cell labeling and ablation in zebrafishDevelopmental Biology, 2007
- Conditional Transgene and Gene Targeting Methodologies in ZebrafishZebrafish, 2006
- Hindbrain Rhombic Lip Is Comprised of Discrete Progenitor Cell Populations Allocated by Pax6Neuron, 2005
- Preservation of segmental hindbrain organization in adult frogsJournal of Comparative Neurology, 2005
- Math1 Is Expressed in Temporally Discrete Pools of Cerebellar Rhombic-Lip Neural ProgenitorsNeuron, 2005
- Connections of Octaval and Lateral Line Nuclei of the Medulla in the Goldfish, Including the Cytoarchitecture of the Secondary Octaval Population in Goldfish and CatfishBrain, Behavior and Evolution, 1996