DEC1 modulates the circadian phase of clock gene expression

A Nakashima, T Kawamoto, KK Honda… - … and cellular biology, 2008 - Taylor & Francis
A Nakashima, T Kawamoto, KK Honda, T Ueshima, M Noshiro, T Iwata, K Fujimoto, H Kubo…
Molecular and cellular biology, 2008Taylor & Francis
DEC1 suppresses CLOCK/BMAL1-enhanced promoter activity, but its role in the circadian
system of mammals remains unclear. Here we examined the effect of Dec1 overexpression
or deficiency on circadian gene expression triggered with 50% serum. Overexpression of
Dec1 delayed the phase of clock genes such as Dec1, Dec2, Per1, and Dbp that contain E
boxes in their regulatory regions, whereas it had little effect on the circadian phase of Per2
and Cry1 carrying CACGTT E′ boxes. In contrast, Dec1 deficiency advanced the phase of …
DEC1 suppresses CLOCK/BMAL1-enhanced promoter activity, but its role in the circadian system of mammals remains unclear. Here we examined the effect of Dec1 overexpression or deficiency on circadian gene expression triggered with 50% serum. Overexpression of Dec1 delayed the phase of clock genes such as Dec1, Dec2, Per1, and Dbp that contain E boxes in their regulatory regions, whereas it had little effect on the circadian phase of Per2 and Cry1 carrying CACGTT E′ boxes. In contrast, Dec1 deficiency advanced the phase of the E-box-containing clock genes but not that of the E′-box-containing clock genes. Accordingly, DEC1 showed strong binding and transrepression on the E box, but not on the E′ box, in chromatin immunoprecipitation, electrophoretic mobility shift, and luciferase reporter assays. Dec1−/− mice showed behavioral rhythms with slightly but significantly longer circadian periods under conditions of constant darkness and faster reentrainment to a 6-h phase-advanced shift of a light-dark cycle. Knockdown of Dec2 with small interfering RNA advanced the phase of Dec1 and Dbp expression, and double knockdown of Dec1 and Dec2 had much stronger effects on the expression of the E-box-containing clock genes. These findings suggest that DEC1, along with DEC2, plays a role in the finer regulation and robustness of the molecular clock.
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