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Temporal orchestration of circadian autophagy rhythm by C/EBP?.


ABSTRACT: Temporal organization of tissue metabolism is important for maintaining nutrient and energy homeostasis in mammals. Autophagy is a conserved cellular pathway that is activated in response to nutrient limitation, resulting in the degradation of cytoplasmic components and the release of amino acids and other nutrients. Here, we show that autophagy exhibits robust circadian rhythm in mouse liver, which is accompanied by cyclic induction of genes involved in various steps of autophagy. Functional analyses of transcription factors and cofactors identified C/EBP? as a potent activator of autophagy. C/EBP? is rhythmically expressed in the liver and is regulated by both circadian and nutritional signals. In cultured primary hepatocytes, C/EBP? stimulates the program of autophagy gene expression and is sufficient to activate autophagic protein degradation. Adenoviral-mediated RNAi knockdown of C/EBP? in vivo abolishes diurnal autophagy rhythm in the liver. Further, circadian regulation of C/EBP? and autophagy is disrupted in mice lacking a functional liver clock. We have thus identified C/EBP? as a key factor that links autophagy to biological clock and maintains nutrient homeostasis throughout light/dark cycles.

SUBMITTER: Ma D 

PROVIDER: S-EPMC3243590 | biostudies-literature | 2011 Sep

REPOSITORIES: biostudies-literature

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Temporal orchestration of circadian autophagy rhythm by C/EBPβ.

Ma Di D   Panda Satchidananda S   Lin Jiandie D JD  

The EMBO journal 20110906 22


Temporal organization of tissue metabolism is important for maintaining nutrient and energy homeostasis in mammals. Autophagy is a conserved cellular pathway that is activated in response to nutrient limitation, resulting in the degradation of cytoplasmic components and the release of amino acids and other nutrients. Here, we show that autophagy exhibits robust circadian rhythm in mouse liver, which is accompanied by cyclic induction of genes involved in various steps of autophagy. Functional an  ...[more]

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