Kavli Affiliate: David Kleinfeld
| Authors: Jia-Jin Liu, Hidenobu Mizuno, Emmanuel Than-Trong, Philipp Machler, Hideaki Kubotera, Tony Barbay, Ching-Yao Wang, Qin-Ling To, Yuki Kamijo, Taki Nishimura, Marc Boisvert, Marie-Eve Paquet, Mikhail Drobizhev, Stephanie J Cragg, Jun Nagai, David Kleinfeld, Serge Charpak and Yusuke NASU
| Summary:
Extracellular L-lactate reports cellular metabolism, but resolving its dynamics alongside intracellular metabolism and neuronal activity remains challenging. Here we develop eLACCO3 and R-eLACCO3, green and red cell-surface lactate biosensors with Ca2+-independent responses and faster response and recovery kinetics in cultured cells. Selected variants provide larger fluorescence responses than their predecessors in brain cells, slices, and living mice and improve detection of glucose-evoked extracellular lactate oscillations. Combining R-eLACCO3 with GCaMP6f enabled imaging of extracellular L-lactate simultaneously with odor-evoked activity in anesthetized mice and cortical activity in awake mice. These biosensors enable multiplexed measurements of extracellular lactate dynamics in relation to intracellular metabolism and neuronal activity.