Proteomics

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A proteomics landscape of circadian clock in mouse liver


ABSTRACT: As a circadian organ, liver executes diverse functions in different phase of the circadian clock. This process is believed to be driven by a transcription program. Here, we present a TF DNA-binding activity centered multi-dimensional proteomics landscape, including DNA-binding activity of TFs, the phosphorylation pattern, ubiquitylation pattern, the nuclear sub-proteome, the whole proteome as well as the transcriptome, to portrait the hierarchical circadian clock network of mouse liver. The TF DNA-binding activity indicates diurnal oscillation in four major pathways, immune response, glucose metabolism, fatty acid metabolism, and the cell cycle. We also isolated the mouse liver Kupffer cells and measured their proteomes in the circadian clock to reveal cell type resolved circadian clock. These are the most comprehensive datasets for circadian clock in the mouse liver and provided the richest data resource for the understanding of mouse liver physiology around the circadian clock.

ORGANISM(S): Mus Musculus

SUBMITTER: Jun Qin  

PROVIDER: PXD008771 | iProX | Mon Jun 25 00:00:00 BST 2018

REPOSITORIES: iProX

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A proteomics landscape of circadian clock in mouse liver.

Wang Yunzhi Y   Song Lei L   Liu Mingwei M   Ge Rui R   Zhou Quan Q   Liu Wanlin W   Li Ruiyang R   Qie Jingbo J   Zhen Bei B   Wang Yi Y   He Fuchu F   Qin Jun J   Ding Chen C  

Nature communications 20180419 1


As a circadian organ, liver executes diverse functions in different phase of the circadian clock. This process is believed to be driven by a transcription program. Here, we present a transcription factor (TF) DNA-binding activity-centered multi-dimensional proteomics landscape of the mouse liver, which includes DNA-binding profiles of different TFs, phosphorylation, and ubiquitylation patterns, the nuclear sub-proteome, the whole proteome as well as the transcriptome, to portray the hierarchical  ...[more]

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