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Optimization of a GCaMP calcium indicator for neural activity imaging.


ABSTRACT: Genetically encoded calcium indicators (GECIs) are powerful tools for systems neuroscience. Recent efforts in protein engineering have significantly increased the performance of GECIs. The state-of-the art single-wavelength GECI, GCaMP3, has been deployed in a number of model organisms and can reliably detect three or more action potentials in short bursts in several systems in vivo. Through protein structure determination, targeted mutagenesis, high-throughput screening, and a battery of in vitro assays, we have increased the dynamic range of GCaMP3 by severalfold, creating a family of "GCaMP5" sensors. We tested GCaMP5s in several systems: cultured neurons and astrocytes, mouse retina, and in vivo in Caenorhabditis chemosensory neurons, Drosophila larval neuromuscular junction and adult antennal lobe, zebrafish retina and tectum, and mouse visual cortex. Signal-to-noise ratio was improved by at least 2- to 3-fold. In the visual cortex, two GCaMP5 variants detected twice as many visual stimulus-responsive cells as GCaMP3. By combining in vivo imaging with electrophysiology we show that GCaMP5 fluorescence provides a more reliable measure of neuronal activity than its predecessor GCaMP3. GCaMP5 allows more sensitive detection of neural activity in vivo and may find widespread applications for cellular imaging in general.

SUBMITTER: Akerboom J 

PROVIDER: S-EPMC3482105 | biostudies-literature | 2012 Oct

REPOSITORIES: biostudies-literature

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Optimization of a GCaMP calcium indicator for neural activity imaging.

Akerboom Jasper J   Chen Tsai-Wen TW   Wardill Trevor J TJ   Tian Lin L   Marvin Jonathan S JS   Mutlu Sevinç S   Calderón Nicole Carreras NC   Esposti Federico F   Borghuis Bart G BG   Sun Xiaonan Richard XR   Gordus Andrew A   Orger Michael B MB   Portugues Ruben R   Engert Florian F   Macklin John J JJ   Filosa Alessandro A   Aggarwal Aman A   Kerr Rex A RA   Takagi Ryousuke R   Kracun Sebastian S   Shigetomi Eiji E   Khakh Baljit S BS   Baier Herwig H   Lagnado Leon L   Wang Samuel S-H SS   Bargmann Cornelia I CI   Kimmel Bruce E BE   Jayaraman Vivek V   Svoboda Karel K   Kim Douglas S DS   Schreiter Eric R ER   Looger Loren L LL  

The Journal of neuroscience : the official journal of the Society for Neuroscience 20121001 40


Genetically encoded calcium indicators (GECIs) are powerful tools for systems neuroscience. Recent efforts in protein engineering have significantly increased the performance of GECIs. The state-of-the art single-wavelength GECI, GCaMP3, has been deployed in a number of model organisms and can reliably detect three or more action potentials in short bursts in several systems in vivo. Through protein structure determination, targeted mutagenesis, high-throughput screening, and a battery of in vit  ...[more]

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