Yang Xiaoyong, Downes Michael, Yu Ruth T, Bookout Angie L, He Weimin, Straume Marty, Mangelsdorf David J, Evans Ronald M
Gene Expression Laboratory, The Salk Institute, 10010 North Torrey Pines Road, La Jolla, CA 92037, USA.
Cell. 2006 Aug 25;126(4):801-10. doi: 10.1016/j.cell.2006.06.050.
As sensors for fat-soluble hormones and dietary lipids, oscillations in nuclear receptor (NR) expression in key metabolic tissues may contribute to circadian entrainment of nutrient and energy metabolism. Surveying the diurnal expression profiles of all 49 mouse nuclear receptors in white and brown adipose tissue, liver, and skeletal muscle revealed that of the 45 NRs expressed, 25 are in a rhythmic cycle and 3 exhibit a single transient pulse of expression 4 hr into the light cycle. While thyroid hormones are generally constant, we find that TRalpha and beta dramatically cycle, suggesting that fundamental concepts such as "basal metabolism" may require reexamination. The dynamic but coordinated changes in nuclear receptor expression, along with their key target genes, offers a logical explanation for known cyclic behavior of lipid and glucose metabolism and suggests novel roles for endocrine and orphan receptors in coupling the peripheral circadian clock to divergent metabolic outputs.
作为脂溶性激素和膳食脂质的传感器,关键代谢组织中核受体(NR)表达的振荡可能有助于营养和能量代谢的昼夜节律同步。对白色和棕色脂肪组织、肝脏及骨骼肌中所有49种小鼠核受体的昼夜表达谱进行研究发现,在所表达的45种NR中,25种呈节律性循环,3种在光照周期开始4小时出现单次短暂表达脉冲。虽然甲状腺激素通常保持恒定,但我们发现TRα和β呈现显著的循环变化,这表明诸如“基础代谢”等基本概念可能需要重新审视。核受体表达及其关键靶基因的动态但协调的变化,为脂质和葡萄糖代谢的已知循环行为提供了合理的解释,并提示内分泌受体和孤儿受体在将外周生物钟与不同代谢输出相耦合方面具有新的作用。