VanderLeest Henk Tjebbe, Houben Thijs, Michel Stephan, Deboer Tom, Albus Henk, Vansteensel Mariska J, Block Gene D, Meijer Johanna H
Department of Molecular Cell Biology, Lab for Neurophysiology, Leiden University Medical Center, 2300 RC Leiden, The Netherlands.
Curr Biol. 2007 Mar 6;17(5):468-73. doi: 10.1016/j.cub.2007.01.048. Epub 2007 Feb 22.
The circadian pacemaker of the suprachiasmatic nucleus (SCN) functions as a seasonal clock through its ability to encode day length [1-6]. To investigate the mechanism by which SCN neurons code for day length, we housed mice under long (LD 16:8) and short (LD 8:16) photoperiods. Electrophysiological recordings of multiunit activity (MUA) in the SCN of freely moving mice revealed broad activity profiles in long days and compressed activity profiles in short days. The patterns remained consistent after release of the mice in constant darkness. Recordings of MUA in acutely prepared hypothalamic slices showed similar differences between the SCN electrical activity patterns in vitro in long and short days. In vitro recordings of neuronal subpopulations revealed that the width of the MUA activity profiles was determined by the distribution of phases of contributing units within the SCN. The subpopulation patterns displayed a significantly broader distribution in long days than in short days. Long-term recordings of single-unit activity revealed short durations of elevated activity in both short and long days (3.48 and 3.85 hr, respectively). The data indicate that coding for day length involves plasticity within SCN neuronal networks in which the phase distribution of oscillating neurons carries information on the photoperiod's duration.
视交叉上核(SCN)的昼夜节律起搏器通过其编码白昼长度的能力发挥季节性时钟的作用[1-6]。为了研究SCN神经元编码白昼长度的机制,我们将小鼠饲养在长(LD 16:8)和短(LD 8:16)光周期条件下。对自由活动小鼠SCN中的多单位活动(MUA)进行电生理记录,结果显示长日照下活动曲线较宽,短日照下活动曲线较窄。在持续黑暗中释放小鼠后,这些模式保持一致。对急性制备的下丘脑切片中的MUA进行记录,结果显示长日照和短日照下SCN体外电活动模式存在类似差异。对神经元亚群的体外记录显示,MUA活动曲线的宽度由SCN内各组成单位的相位分布决定。亚群模式在长日照下的分布比短日照下显著更宽。对单单位活动的长期记录显示,短日照和长日照下活动增强的持续时间都较短(分别为3.48小时和3.85小时)。数据表明,白昼长度的编码涉及SCN神经元网络内的可塑性,其中振荡神经元的相位分布携带有关光周期持续时间的信息。