Department of Neurobiology, Yale University School of Medicine, New Haven, Connecticut;
J Neurophysiol. 2013 Sep;110(6):1441-54. doi: 10.1152/jn.01066.2012. Epub 2013 Jun 5.
Prior to eye opening, waves of spontaneous activity sweep across the developing retina. These "retinal waves," together with genetically encoded molecular mechanisms, mediate the formation of visual maps in the brain. However, the specific role of wave activity in synapse development in retino-recipient brain regions is unclear. Here we compare the functional development of synapses and the morphological development of neurons in the superior colliculus (SC) of wild-type (WT) and transgenic (β2-TG) mice in which retinal wave propagation is spatially truncated (Xu HP, Furman M, Mineur YS, Chen H, King SL, Zenisek D, Zhou ZJ, Butts DA, Tian N, Picciotto MR, Crair MC. Neuron 70: 1115-1127, 2011). We use two recently developed brain slice preparations to examine neurons and synapses in the binocular vs. mainly monocular SC. We find that retinocollicular synaptic strength is reduced whereas the number of retinal inputs is increased in the binocular SC of β2-TG mice compared with WT mice. In contrast, in the mainly monocular SC the number of retinal inputs is normal in β2-TG mice, but, transiently, synapses are abnormally strong, possibly because of enhanced activity-dependent competition between local, "small" retinal wave domains. These findings demonstrate that retinal wave size plays an instructive role in the synaptic and morphological development of SC neurons, possibly through a competitive process among retinofugal axons.
在眼睛睁开之前,自发活动波会席卷发育中的视网膜。这些“视网膜波”与基因编码的分子机制一起介导了大脑中视觉图谱的形成。然而,波活动在视网膜传入脑区的突触发育中的具体作用尚不清楚。在这里,我们比较了野生型(WT)和转基因(β2-TG)小鼠中高级视皮层(SC)中突触的功能发育和神经元的形态发育,其中视网膜波传播在空间上被截断(Xu HP、Furman M、Mineur YS、Chen H、King SL、Zenisek D、Zhou ZJ、Butts DA、Tian N、Picciotto MR、Crair MC。神经元 70: 1115-1127, 2011)。我们使用两种新开发的脑片制备方法来研究双眼和主要单眼 SC 中的神经元和突触。我们发现,与 WT 小鼠相比,β2-TG 小鼠的双眼 SC 中视网膜-视皮层突触强度降低,但视网膜传入的数量增加。相比之下,在主要单眼 SC 中,β2-TG 小鼠的视网膜传入数量正常,但突触暂时异常强,可能是由于局部“小”视网膜波域之间的活动依赖性竞争增强所致。这些发现表明,视网膜波大小在 SC 神经元的突触和形态发育中起着指导作用,可能是通过视传出轴突之间的竞争过程实现的。