Improved PeT Molecules for Optically Sensing Voltage in Neurons

Woodford, Clifford R.; Frady, E. Paxon; Smith, Richard S.; Morey, Benjamin; Canzi, Gabriele; Palida, Sakina F.; Araneda, Ricardo C.; Kristan, William B., Jr.; Kubiak, Clifford P.; Miller, Evan W.; Tsien, Roger Y.

Abstract

VoltageFluor (VF) dyes have the potential to measure voltage optically in excitable membranes with a combination of high spatial and temporal resolution essential to better characterize the voltage dynamics of large groups of excitable cells. VF dyes sense voltage with high speed and sensitivity using photoinduced electron transfer (PeT) through a conjugated molecular wire. We show that tuning the driving force for PeT (Delta G(PeT) + w) through systematic chemical substitution modulates voltage sensitivity, estimate (Delta G(PeT) + w) values from experimentally measured redox potentials, and validate the voltage sensitivities in patch-clamped HEK cells for 10 new VF dyes. VF2.1(OMe).H, with a 48% Delta F/F per 100 mV, shows approximately 2-fold improvement over previous dyes in HEK cells, dissociated rat cortical neurons, and medicinal leech ganglia. Additionally, VF2.1(OMe).H faithfully reports pharmacological effects and circuit activity in mouse olfactory bulb slices, thus opening a wide range of previously inaccessible applications for voltage-sensitive dyes.

Más información

Título según WOS: ID WOS:000349575800023 Not found in local WOS DB
Título de la Revista: JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volumen: 137
Número: 5
Editorial: AMER CHEMICAL SOC
Fecha de publicación: 2015
Página de inicio: 1817
Página final: 1824
DOI:

10.1021/ja510602z

Notas: ISI