A single-cell transcriptomic and anatomic atlas of mouse dorsal raphe Pet1 neurons

Author:

Okaty Benjamin W1ORCID,Sturrock Nikita1ORCID,Escobedo Lozoya Yasmin1ORCID,Chang YoonJeung1ORCID,Senft Rebecca A1ORCID,Lyon Krissy A1ORCID,Alekseyenko Olga V1ORCID,Dymecki Susan M1ORCID

Affiliation:

1. Department of Genetics, Harvard Medical School, Boston, United States

Abstract

Among the brainstem raphe nuclei, the dorsal raphe nucleus (DR) contains the greatest number of Pet1-lineage neurons, a predominantly serotonergic group distributed throughout DR subdomains. These neurons collectively regulate diverse physiology and behavior and are often therapeutically targeted to treat affective disorders. Characterizing Pet1 neuron molecular heterogeneity and relating it to anatomy is vital for understanding DR functional organization, with potential to inform therapeutic separability. Here we use high-throughput and DR subdomain-targeted single-cell transcriptomics and intersectional genetic tools to map molecular and anatomical diversity of DR-Pet1 neurons. We describe up to fourteen neuron subtypes, many showing biased cell body distributions across the DR. We further show that P2ry1-Pet1 DR neurons – the most molecularly distinct subtype – possess unique efferent projections and electrophysiological properties. These data complement and extend previous DR characterizations, combining intersectional genetics with multiple transcriptomic modalities to achieve fine-scale molecular and anatomic identification of Pet1 neuron subtypes.

Funder

NARSAD Young Investigator Grant

National Institute on Drug Abuse

National Heart, Lung, and Blood Institute

GVR Khodadad Fund for the Study of Genetic, Neurobiological, and Physiochemical Processes of EPS

National Institute of Neurological Disorders and Stroke

Howard Hughes Medical Institute Gilliam Fellowship

Harvard Brain Science Initiative Bipolar Disorder Seed Grant, supported by Kent and Liz Dauten

NIH Blueprint for Neuroscience Research

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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