Defining diurnal fluctuations in mouse choroid plexus and CSF at high molecular, spatial, and temporal resolution

Author:

Fame Ryann M.ORCID,Kalugin Peter N.ORCID,Petrova BoryanaORCID,Xu HuixinORCID,Soden Paul A.,Shipley Frederick B.,Dani Neil,Grant Bradford,Pragana Aja,Head Joshua P.,Gupta Suhasini,Shannon Morgan L.,Chifamba Fortunate F.,Hawks-Mayer Hannah,Vernon Amanda,Gao Fan,Zhang Yong,Holtzman Michael J.ORCID,Heiman MyriamORCID,Andermann Mark L.ORCID,Kanarek NaamaORCID,Lipton Jonathan O.ORCID,Lehtinen Maria K.ORCID

Abstract

AbstractTransmission and secretion of signals via the choroid plexus (ChP) brain barrier can modulate brain states via regulation of cerebrospinal fluid (CSF) composition. Here, we developed a platform to analyze diurnal variations in male mouse ChP and CSF. Ribosome profiling of ChP epithelial cells revealed diurnal translatome differences in metabolic machinery, secreted proteins, and barrier components. Using ChP and CSF metabolomics and blood-CSF barrier analyses, we observed diurnal changes in metabolites and cellular junctions. We then focused on transthyretin (TTR), a diurnally regulated thyroid hormone chaperone secreted by the ChP. Diurnal variation in ChP TTR depended on Bmal1 clock gene expression. We achieved real-time tracking of CSF-TTR in awake TtrmNeonGreen mice via multi-day intracerebroventricular fiber photometry. Diurnal changes in ChP and CSF TTR levels correlated with CSF thyroid hormone levels. These datasets highlight an integrated platform for investigating diurnal control of brain states by the ChP and CSF.

Funder

U.S. Department of Health & Human Services | National Institutes of Health

New York Stem Cell Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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