The intrinsic period of circadian clocks is their defining adaptive property. To identify the biochemical mechanisms whereby casein kinase1 (CK1) determines circadian period in mammals, we created mouse null and tau mutants of Ck1 epsilon. Circadian period lengthened in CK1epsilon-/-, whereas CK1epsilon(tau/tau) shortened circadian period of behavior in vivo and suprachiasmatic nucleus firing rates in vitro, by accelerating PERIOD-dependent molecular feedback loops. CK1epsilon(tau/tau) also accelerated molecular oscillations in peripheral tissues, revealing its global role in circadian pacemaking. CK1epsilon(tau) acted by promoting degradation of both nuclear and cytoplasmic PERIOD, but not CRYPTOCHROME, proteins. Together, these whole-animal and biochemical studies explain how tau, as a gain-of-function mutation, acts at a specific circadian phase to promote degradation of PERIOD proteins and thereby accelerate the mammalian clockwork in brain and periphery.
Setting clock speed in mammals: the CK1 epsilon tau mutation in mice accelerates circadian pacemakers by selectively destabilizing PERIOD proteins.
哺乳动物的生物钟速度设定:小鼠的 CK1 epsilon tau 突变通过选择性地破坏 PERIOD 蛋白的稳定性来加速昼夜节律起搏器
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作者:Meng Qing-Jun, Logunova Larisa, Maywood Elizabeth S, Gallego Monica, Lebiecki Jake, Brown Timothy M, Sládek Martin, Semikhodskii Andrei S, Glossop Nicholas R J, Piggins Hugh D, Chesham Johanna E, Bechtold David A, Yoo Seung-Hee, Takahashi Joseph S, Virshup David M, Boot-Handford Raymond P, Hastings Michael H, Loudon Andrew S I
| 期刊: | Neuron | 影响因子: | 15.000 |
| 时间: | 2008 | 起止号: | 2008 Apr 10; 58(1):78-88 |
| doi: | 10.1016/j.neuron.2008.01.019 | 研究方向: | 其它 |
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