Department of Molecular, Cell and Developmental Biology, University of California, Santa Cruz, Santa Cruz, California 95064, USA.
J Neurosci. 2012 Apr 11;32(15):5264-71. doi: 10.1523/JNEUROSCI.0240-12.2012.
The superior colliculus (SC) is a midbrain structure that integrates visual, somatosensory, and auditory inputs to direct head and eye movements. Each of these modalities is topographically mapped and aligned with the others to ensure precise behavioral responses to multimodal stimuli. While it is clear that neural activity is instructive for topographic alignment of inputs from the visual cortex (V1) and auditory system with retinal axons in the SC, there is also evidence that activity-independent mechanisms are used to establish topographic alignment between modalities. Here, we show that the topography of the projection from primary somatosensory cortex (S1) to the SC is established during the first postnatal week. Unlike V1-SC projections, the S1-SC projection does not bifurcate when confronted with a duplicated retinocollicular map, showing that retinal input in the SC does not influence the topography of the S1-SC projection. However, S1-SC topography is disrupted in mice lacking ephrin-As, which we find are expressed in graded patterns along with their binding partners, the EphA4 and EphA7, in both S1 and the somatosensory recipient layer of the SC. Together, these data support a model in which somatosensory inputs into the SC map topographically and establish alignment with visual inputs in the SC using a gradient-matching mechanism.
上丘(SC)是中脑的一个结构,它整合视觉、躯体感觉和听觉输入,以指导头部和眼球运动。这些模态中的每一个都具有地形映射,并与其他模态对齐,以确保对多模态刺激做出精确的行为反应。虽然很明显,神经活动对于来自视觉皮层(V1)和听觉系统的输入与 SC 中的视网膜轴突的地形对齐是有指导作用的,但也有证据表明,活动无关的机制被用于建立模态之间的地形对齐。在这里,我们表明,来自初级躯体感觉皮层(S1)到 SC 的投射的地形在出生后的第一周内建立。与 V1-SC 投射不同,当面对复制的视网膜-丘状图时,S1-SC 投射不会分叉,这表明 SC 中的视网膜输入不会影响 S1-SC 投射的地形。然而,在缺乏 ephrin-As 的小鼠中,S1-SC 地形被破坏,我们发现 Ephrin-As 及其结合伴侣 EphA4 和 EphA7 在 S1 和 SC 的躯体感觉接受层中以梯度模式表达。这些数据共同支持了一个模型,即 SC 中的躯体感觉输入通过梯度匹配机制进行地形映射,并与 SC 中的视觉输入建立对齐。