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

Sun, Fangmiao; Zhou, Jingheng; Dai, Bing; Qian, Tongrui; Zeng, Jianzhi; Li, Xuelin; Zhuo, Yizhou; Zhang, Yajun et al. · Nat Methods · 2020

basic_science · Level V

Where this comes from

Abstract

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 (GRAB<sub>DA</sub>) sensors and optimized versions of green fluorescent GRAB<sub>DA</sub> sensors. In response to extracellular DA, both the red and green GRAB<sub>DA</sub> sensors exhibit a large increase in fluorescence, with subcellular resolution, subsecond kinetics and nanomolar-to-submicromolar affinity. Moreover, the GRAB<sub>DA</sub> 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 GRAB<sub>DA</sub> with either green GRAB<sub>DA</sub> or the calcium indicator GCaMP6s allows tracking of dopaminergic signaling and neuronal activity in distinct circuits in vivo.

Medical subject headings