Résumé
Significance Circadian clocks orchestrate daily rhythms in behavior and physiology using temporal regulation of gene expression to control core clock genes and rhythmic output programs. Although transcription regulation was shown to drive extensive diurnal mRNA rhythms, less is known about the proteins. Here, we provide a proteome-wide study of rhythmic protein accumulation in mouse liver, showing that proteins preferentially accumulate in the morning and during the night. About one-half of these rhythmic proteins could not be explained by rhythmic mRNAs, suggesting that translational or posttranslational regulation plays an important role. Moreover, such rhythms involved many secreted proteins and were clock-independent. Hence, these findings indicate that feeding behavior might determine the rhythmic functions of circulating proteins in the blood.