Mendoza-Viveros Lucia, Obrietan Karl, Cheng Hai-Ying M
Department of Biology, University of Toronto Mississauga, Mississauga, ON, L5L 1C6, Canada.
Department of Cell and Systems Biology, University of Toronto, Toronto, ON, M5S 3G3, Canada.
J Neurol Neuromedicine. 2018;3(1):21-25. doi: 10.29245/2572.942X/2017/1.1169. Epub 2018 Feb 27.
Daily rhythms in behavior and physiology are coordinated by an endogenous clock located in the suprachiasmatic nucleus (SCN) of the hypothalamus. This central pacemaker also relays day length information to allow for seasonal adaptation, a process for which melatonin signaling is essential. How the SCN encodes day length is not fully understood. MicroRNAs (miRNAs) are small, non-coding RNAs that regulate gene expression by directing target mRNAs for degradation or translational repression. The miR-132/212 cluster plays a key role in facilitating neuronal plasticity, and miR-132 has been shown previously to modulate resetting of the central clock. A recent study from our group showed that miR-132/212 in mice is required for optimal adaptation to seasons and non-24-hour light/dark cycles through regulation of its target gene, methyl CpG-binding protein (MeCP2), in the SCN and dendritic spine density of SCN neurons. Furthermore, in the seasonal rodent (Syrian hamster), adaptation to short photoperiods is accompanied by structural plasticity in the SCN independently of melatonin signaling, thus further supporting a key role for SCN structural and, in turn, functional plasticity in the coding of day length. In this commentary, we discuss our recent findings in context of what is known about day length encoding by the SCN, and propose future directions.
行为和生理的日常节律由位于下丘脑视交叉上核(SCN)的内源性生物钟协调。这个中央起搏器还传递日长信息以实现季节性适应,而褪黑素信号传导对于这一过程至关重要。SCN如何编码日长尚未完全了解。微小RNA(miRNA)是小的非编码RNA,通过引导靶mRNA降解或翻译抑制来调节基因表达。miR-132/212簇在促进神经元可塑性方面起关键作用,并且先前已表明miR-132可调节中央生物钟的重置。我们小组最近一项研究表明,小鼠中的miR-132/212通过调节其靶基因甲基CpG结合蛋白(MeCP2)在SCN中的表达以及SCN神经元的树突棘密度,对于最佳适应季节和非24小时光暗周期是必需的。此外,在季节性啮齿动物(叙利亚仓鼠)中,适应短光周期伴随着SCN中的结构可塑性,且不依赖于褪黑素信号传导,从而进一步支持了SCN结构以及相应地在日长编码中的功能可塑性的关键作用。在这篇评论中,我们结合关于SCN编码日长的已知信息讨论了我们最近的发现,并提出了未来的方向。