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Citation
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HERO ID
7425148
Reference Type
Journal Article
Title
Suprachiasmatic VIP neurons are required for normal circadian rhythmicity and comprised of molecularly distinct subpopulations
Author(s)
Todd, WD; Venner, A; Anaclet, C; Broadhurst, RY; De Luca, R; Bandaru, SS; Issokson, L; Hablitz, LM; Cravetchi, O; Arrigoni, E; Campbell, JN; Allen, CN; Olson, DP; Fuller, PM; ,
Year
2020
Is Peer Reviewed?
1
Journal
Nature Communications
EISSN:
2041-1723
Publisher
NATURE RESEARCH
Location
BERLIN
Language
English
PMID
32879310
DOI
10.1038/s41467-020-17197-2
Web of Science Id
WOS:000607085800018
URL
http://www.nature.com/articles/s41467-020-17197-2
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Abstract
The hypothalamic suprachiasmatic (SCN) clock contains several neurochemically defined cell groups that contribute to the genesis of circadian rhythms. Using cell-specific and genetically targeted approaches we have confirmed an indispensable role for vasoactive intestinal polypeptide-expressing SCN (SCNVIP) neurons, including their molecular clock, in generating the mammalian locomotor activity (LMA) circadian rhythm. Optogenetic-assisted circuit mapping revealed functional, di-synaptic connectivity between SCNVIP neurons and dorsomedial hypothalamic neurons, providing a circuit substrate by which SCNVIP neurons may regulate LMA rhythms. In vivo photometry revealed that while SCNVIP neurons are acutely responsive to light, their activity is otherwise behavioral state invariant. Single-nuclei RNA-sequencing revealed that SCNVIP neurons comprise two transcriptionally distinct subtypes, including putative pacemaker and non-pacemaker populations. Altogether, our work establishes necessity of SCNVIP neurons for the LMA circadian rhythm, elucidates organization of circadian outflow from and modulatory input to SCNVIP cells, and demonstrates a subpopulation-level molecular heterogeneity that suggests distinct functions for specific SCNVIP subtypes.
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