Author:
Dalangin Rochelin,Drobizhev Mikhail,Molina Rosana S.,Aggarwal Abhi,Patel Ronak,Abdelfattah Ahmed S.,Zhao Yufeng,Wu Jiahui,Podgorski Kaspar,Schreiter Eric R.,Hughes Thomas E.,Campbell Robert E.,Shen Yi
Abstract
AbstractGenetically encoded calcium ion (Ca2+) indicators (GECIs) are widely-used molecular tools for functional imaging of Ca2+ dynamics and neuronal activities on a single cell level. Here we report the design and development of two new far-red fluorescent GECIs, FR-GECO1a and FR-GECO1c, based on the monomeric far-red fluorescent protein mKelly. We characterized these far-red GECIs as purified proteins and assessed their performance when expressed in cultured neurons. FR-GECOs have excitation and emission maxima at ~ 596 nm and ~ 644 nm, respectively, display large responses to Ca2+ (ΔF/F0 = 6 for FR-GECO1a, 18 for FR-GECO1c), and are bright under both one-photon and two-photon illumination. FR-GECOs also have high affinities (apparent Kd = 29 nM for FR-GECO1a, 83 nM for FR-GECO1c) for Ca2+, and they enable sensitive and fast detection of single action potentials in neurons.
Publisher
Cold Spring Harbor Laboratory
Cited by
29 articles.
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