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Rational Engineering of XCaMPs, a Multicolor GECI Suite for In Vivo Imaging of Complex Brain Circuit Dynamics
Author(s) -
Masatoshi Inoue,
Atsuya Takeuchi,
Satoshi Manita,
Shinichiro Horigane,
Masayuki Sakamoto,
Ryosuke Kawakami,
Kazushi Yamaguchi,
Kohei Otomo,
Hiroyuki Yokoyama,
Ryang Kim,
Tatsushi Yokoyama,
Sayaka TakemotoKimura,
Manabu Abe,
Michiko Okamura,
Yayoi Kondo,
Sean Quirin,
Charu Ramakrishnan,
Takeshi Imamura,
Kenji Sakimura,
Tomomi Nemoto,
Masanobu Kano,
Hajime Fujii,
Karl Deisseroth,
K. Kitamura,
Haruhiko Bito
Publication year - 2019
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2019.04.007
Subject(s) - biology , suite , neuroscience , dynamics (music) , in vivo , computational biology , genetics , history , physics , archaeology , acoustics
To decipher dynamic brain information processing, current genetically encoded calcium indicators (GECIs) are limited in single action potential (AP) detection speed, combinatorial spectral compatibility, and two-photon imaging depth. To address this, here, we rationally engineered a next-generation quadricolor GECI suite, XCaMPs. Single AP detection was achieved within 3-10 ms of spike onset, enabling measurements of fast-spike trains in parvalbumin (PV)-positive interneurons in the barrel cortex in vivo and recording three distinct (two inhibitory and one excitatory) ensembles during pre-motion activity in freely moving mice. In vivo paired recording of pre- and postsynaptic firing revealed spatiotemporal constraints of dendritic inhibition in layer 1 in vivo, between axons of somatostatin (SST)-positive interneurons and apical tufts dendrites of excitatory pyramidal neurons. Finally, non-invasive, subcortical imaging using red XCaMP-R uncovered somatosensation-evoked persistent activity in hippocampal CA1 neurons. Thus, the XCaMPs offer a critical enhancement of solution space in studies of complex neuronal circuit dynamics. VIDEO ABSTRACT.

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