Circadian Rhythms Group, Göttingen, Germany.
J Biol Rhythms. 2012 Dec;27(6):478-89. doi: 10.1177/0748730412462838.
In mammals, the molecular circadian clockwork is comprised of interlocked transcriptional-translational feedback loops (TTLs). Three Period (Per1-3) and 2 Dec (Dec1/2) genes interact in regulating the activity of the transcriptional activators CLOCK/NPAS2 and BMAL1. While deletion of Per1 and Per2 in mice results in behavioral arrhythmicity, Dec deletion has less dramatic effects on activity rhythms, affecting primarily phase of entrainment and free-running period. In intact animals, clock gene mutant phenotypes are often masked due to intercellular coupling mechanisms that stabilize cellular rhythms. Therefore, to study Per/Dec genetic interaction at the cellular level, we isolated fibroblasts from different tissues of Per1, Per2, and Dec2 single and double mutant mice. We show that in the cellular TTL, Pers and Dec2 act in a principally synergistic way, but tissue-specific differences in this interaction are seen. A rescue of rhythmicity in Per2 mutant cells after additional deletion of Dec2 was observed, indicating that in the absence of Per2, DEC2 destabilizes TTL function. Rhythm power in Per1/Dec2 and Per2/Dec2 double mutants was strongly reduced, suggesting that interaction of Dec2 with both Per genes is important for stabilizing clock period. Contrary to what was observed for behavior, nonsynergistic effects of Dec2 and Per1/2 mutations were observed on cellular clock phase regulation that do not correlate with period effects. Our data reveal cell type-specific interactions of Per1/2 and Dec2 in the regulation of period, phase, and rhythm sustainment, emphasizing the differential organization of the mammalian clock machinery in different tissues.
在哺乳动物中,分子生物钟由互锁的转录-翻译反馈环(TTLs)组成。三个 Period(Per1-3)和 2 Dec(Dec1/2)基因相互作用,调节转录激活因子 CLOCK/NPAS2 和 BMAL1 的活性。虽然小鼠中 Per1 和 Per2 的缺失导致行为节律紊乱,但 Dec 的缺失对活动节律的影响较小,主要影响同步和自由运行周期的相位。在完整的动物中,由于细胞间耦合机制稳定细胞节律,时钟基因突变表型通常被掩盖。因此,为了在细胞水平上研究 Per/Dec 遗传相互作用,我们从 Per1、Per2 和 Dec2 单突变和双突变小鼠的不同组织中分离出成纤维细胞。我们表明,在细胞 TTL 中,Pers 和 Dec2 主要以协同方式发挥作用,但在这种相互作用中存在组织特异性差异。在 Per2 突变细胞中进一步缺失 Dec2 后观察到节律性的恢复,表明在没有 Per2 的情况下,DEC2 破坏了 TTL 功能。在 Per1/Dec2 和 Per2/Dec2 双突变体中,节律功率大大降低,表明 Dec2 与两个 Per 基因的相互作用对于稳定时钟周期很重要。与行为观察结果相反,Dec2 和 Per1/2 突变对细胞时钟相位调节的非协同作用与周期效应无关。我们的数据揭示了 Per1/2 和 Dec2 在调节周期、相位和节律维持方面的细胞类型特异性相互作用,强调了哺乳动物生物钟机制在不同组织中的不同组织方式。