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Publication : Next-generation GRAB sensors for monitoring dopaminergic activity in vivo.

First Author  Sun F Year  2020
Journal  Nat Methods Volume  17
Issue  11 Pages  1156-1166
PubMed ID  33087905 Mgi Jnum  J:349520
Mgi Id  MGI:6727547 Doi  10.1038/s41592-020-00981-9
Citation  Sun F, et al. (2020) Next-generation GRAB sensors for monitoring dopaminergic activity in vivo. Nat Methods 17(11):1156-1166
abstractText  Dopamine (DA) plays a critical role in the brain, and the ability to directly measure dopaminergic activity is essential for understanding its physiological functions. We therefore developed red fluorescent G-protein-coupled receptor-activation-based DA (GRABDA) sensors and optimized versions of green fluorescent GRABDA sensors. In response to extracellular DA, both the red and green GRABDA sensors exhibit a large increase in fluorescence, with subcellular resolution, subsecond kinetics and nanomolar-to-submicromolar affinity. Moreover, the GRABDA sensors resolve evoked DA release in mouse brain slices, detect evoked compartmental DA release from a single neuron in live flies and report optogenetically elicited nigrostriatal DA release as well as mesoaccumbens dopaminergic activity during sexual behavior in freely behaving mice. Coexpressing red GRABDA with either green GRABDA or the calcium indicator GCaMP6s allows tracking of dopaminergic signaling and neuronal activity in distinct circuits in vivo.
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