Genetically encoded calcium indicators for multi-color neural activity imaging and combination with optogenetics

被引:497
作者
Akerboom, Jasper [1 ]
Calderon, Nicole Carreras [1 ,2 ,3 ]
Tian, Lin [1 ]
Wabnig, Sebastian [4 ,5 ]
Prigge, Matthias [6 ]
Tolo, Johan [7 ]
Gordus, Andrew [8 ]
Orger, Michael B. [9 ,10 ]
Severi, Kristen E. [9 ]
Macklin, John J. [1 ]
Patel, Ronak [1 ]
Pulver, Stefan R. [1 ]
Wardill, Trevor J. [1 ]
Fischer, Elisabeth [4 ,5 ]
Schueler, Christina [4 ,5 ]
Chen, Tsai-Wen [1 ]
Sarkisyan, Karen S. [1 ]
Marvin, Jonathan S. [1 ]
Bargmann, Cornelia I. [8 ]
Kim, Douglas S. [1 ]
Kugler, Sebastian [7 ]
Lagnado, Leon [2 ]
Hegemann, Peter [6 ]
Gottschalk, Alexander [4 ,5 ]
Schreiter, Eric R. [1 ,3 ]
Looger, Loren L. [1 ]
机构
[1] Howard Hughes Med Inst, Ashburn, VA 20147 USA
[2] MRC, Mol Biol Lab, Cambridge CB2 2QH, England
[3] Univ Puerto Rico Rio Piedras, Dept Chem, San Juan, PR USA
[4] Goethe Univ Frankfurt, Inst Biochem, D-60054 Frankfurt, Germany
[5] Goethe Univ Frankfurt, Buchmann Inst Mol Life Sci, D-60054 Frankfurt, Germany
[6] Humboldt Univ, D-10099 Berlin, Germany
[7] Univ Med Gottingen, Dept Neurol, Gottingen, Germany
[8] Rockefeller Univ, Howard Hughes Med Inst, Lab Neural Circuits & Behav, New York, NY 10021 USA
[9] Harvard Univ, Ctr Brain Sci, Dept Mol & Cellular Biol, Cambridge, MA 02138 USA
[10] Champalimaud Ctr Unknown, Champalimaud Neurosci Programme, Lisbon, Portugal
来源
FRONTIERS IN MOLECULAR NEUROSCIENCE | 2013年 / 6卷
关键词
calcium imaging; genetically encoded calcium indicator; multi-color imaging; protein engineering; optogenetics; RED FLUORESCENT PROTEIN; MONOMERIC RED; OPTICAL INTERROGATION; CRYSTAL-STRUCTURE; LIGHT-ACTIVATION; STRUCTURAL BASIS; IN-VIVO; GREEN; REVEALS; BRIGHT;
D O I
10.3389/fnmol.2013.00002
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Genetically encoded calcium indicators (GECIs) are powerful tools for systems neuroscience. Here we describe red, single wavelength GECIs, "RCaMPs," engineered from circular permutation of the thermostable red fluorescent protein mRuby. High-resolution crystal structures of mRuby, the red sensor RCaMP and the recently published red GECI R-GECO1 give insight into the chromophore environments of the Ca2+-bound state of the sensors and the engineered protein domain interfaces of the different indicators. We characterized the biophysical properties and performance of RCaMP sensors in vitro and in vivo in Caenorhabditis elegans, Drosophila larvae, and larval zebrafish. Further, we demonstrate 2-color calcium imaging both within the same cell (registering rnitochondrial and somatic [Ca2+]) and between two populations of cells: neurons and astrocytes. Finally, we perform integrated optogenetics experiments, wherein neural activation via channelrhodopsin-2 (ChR2) or a red-shifted variant, and activity imaging via RCaMP or GCaMe are conducted simultaneously, with the ChR2/RCaMP pair providing independently addressable spectral channels. Using this paradigm, we measure calcium responses of naturalistic and ChR2-evoked muscle contractions in vivo in crawling C. elegans. We systematically compare the RCaMP sensors to R-GEC01, in terms of action potential-evoked fluorescence increases in neurons, photobleaching, and photoswitching. R-GECO1 displays higher Ca2+ affinity and larger dynamic range than RCaMe but exhibits significant photoactivation with blue and green light, suggesting that integrated channelrhodopsin-based optogenetics using R-GECO1 may be subject to artifact. Finally, we create and test blue, cyan, and yellow variants engineered from GCaMP by rational design. This engineered set of chromatic variants facilitates new experiments in functional imaging and optogenetics.
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页数:29
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