Amir Shimon, Lamont Elaine Waddington, Robinson Barry, Stewart Jane
Center for Studies in Behavioral Neurobiology, Department of Psychology, Concordia University, Montréal, Québec H4B 1R6, Canada.
J Neurosci. 2004 Jan 28;24(4):781-90. doi: 10.1523/JNEUROSCI.4488-03.2004.
Circadian rhythms in mammals are regulated not only globally by the master clock in the suprachiasmatic nucleus (SCN), but also locally by widely distributed populations of clock cells in the brain and periphery that control tissue-specific rhythmic outputs. Here we show that the oval nucleus of the bed nucleus of the stria terminalis (BNST-OV) exhibits a robust circadian rhythm in expression of the Period2 (PER2) clock protein. PER2 expression is rhythmic in the BNST-OV in rats housed under a light/dark cycle or in constant darkness, in blind rats, and in mice, and is in perfect synchrony with the PER2 rhythm of the SCN. Constant light or bilateral SCN lesions abolish the rhythm of PER2 in the BNST-OV. Large abrupt shifts in the light schedule transiently uncouple the BNST-OV rhythm from that of the SCN. Re-entrainment of the PER2 rhythm is faster in the SCN than in the BNST-OV, and it is faster after a delay than an advance shift. Bilateral adrenalectomy blunts the PER2 rhythm in the BNST-OV. Thus, the BNST-OV contains circadian clock cells that normally oscillate in synchrony with the SCN, but these cells appear to require both input from the SCN and circulating glucocorticoids to maintain their circadian oscillation. Taken together with what is known about the functional organization of the connections of the BNST-OV with systems of the brain involved in stress and motivational processes, these findings place BNST-OV oscillators in a position to influence specific physiological and behavioral rhythms downstream from the SCN clock.
哺乳动物的昼夜节律不仅受视交叉上核(SCN)中的主时钟全局调控,还受大脑和外周广泛分布的时钟细胞群体局部调控,这些时钟细胞控制着组织特异性的节律输出。在这里,我们表明终纹床核的椭圆形核(BNST-OV)在周期蛋白2(PER2)时钟蛋白的表达上呈现出强烈的昼夜节律。在明暗循环或持续黑暗条件下饲养的大鼠、盲鼠和小鼠中,BNST-OV中的PER2表达具有节律性,并且与SCN的PER2节律完全同步。持续光照或双侧SCN损伤会消除BNST-OV中PER2的节律。光照时间表的大幅突然变化会使BNST-OV的节律与SCN的节律暂时解耦。SCN中PER2节律的重新同步比BNST-OV更快,延迟后的重新同步比提前变化后的更快。双侧肾上腺切除术会减弱BNST-OV中PER2的节律。因此,BNST-OV包含通常与SCN同步振荡的昼夜节律时钟细胞,但这些细胞似乎需要来自SCN的输入和循环糖皮质激素来维持其昼夜振荡。结合已知的BNST-OV与参与应激和动机过程的大脑系统连接的功能组织,这些发现使BNST-OV振荡器能够影响SCN时钟下游的特定生理和行为节律。