Proteomics

Dataset Information

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Mouse Circadian Proteome Atlas by next-generation deep proteome analysis


ABSTRACT: The circadian clock drives daily rhythms of gene expression and physiological functions across tissues throughout the body. Advances in next-generation DNA sequencing have provided extensive insights into gene expression at the RNA level, but more functional information at the protein level with sufficient depth has been limited by technical challenges. Recently, the next-generation mass spectrometer Orbitrap Astral was developed, allowing us to quantify protein abundance with greater sensitivity and accuracy. In this study, we generated a comprehensive mouse circadian proteome atlas (available in https://chiba1.dynacom.co.jp/mcp_atlas/) by analyzing protein abundance in 32 tissues including the suprachiasmatic nucleus (SCN) across the day using Orbitrap Astral. Data-independent acquisition of 584 samples including developmental samples revealed the spatiotemporal profiles of 18,956 proteins, accounting for 73.8% of all proteins registered in UniProt. Proteome and phospho-proteome analyses of whole-cell and nuclear proteins in the liver uncovered circadian profiles not only in protein abundance but also in subcellular localization and post-translational modification. Notably, proteome analysis revealed global changes in protein phosphorylation status in hPER2-S662G mutant mice, a genetic model of human familial advanced sleep phase (FASP). This multi-tissue circadian proteome atlas provides a fundamental resource for understanding when, where, and which proteins are expressed and function.

INSTRUMENT(S):

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Liver

SUBMITTER: Hikari Yoshitane  

LAB HEAD: Hikari Yoshitane

PROVIDER: PXD069794 | Pride | 2025-11-27

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
250424_04_ppt_total_CT10_2.raw Raw
250424_04_ppt_total_CT22_1.raw Raw
250424_04_ppt_total_CT6_1.raw Raw
250424_05_ppt_total_CT14_1.raw Raw
250424_05_ppt_total_CT18_1.raw Raw
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