Queensland Brain Institute, The University of Queensland, Brisbane, QLD 4072, Australia.
Queensland Brain Institute, The University of Queensland, Brisbane, QLD 4072, Australia; School of Biomedical Sciences, The University of Queensland, Brisbane, QLD 4072, Australia.
Neuron. 2014 Jun 18;82(6):1289-98. doi: 10.1016/j.neuron.2014.04.040.
Bilateral integration of sensory and associative brain processing is achieved by precise connections between homologous regions in the two hemispheres via the corpus callosum. These connections form postnatally, and unilateral deprivation of sensory or spontaneous cortical activity during a critical period severely disrupts callosal wiring. However, little is known about how this early activity affects precise circuit formation. Here, using in utero electroporation of reporter genes, optogenetic constructs, and direct disruption of activity in callosal neurons combined with whisker ablations, we show that balanced interhemispheric activity, and not simply intact cortical activity in either hemisphere, is required for functional callosal targeting. Moreover, bilateral ablation of whiskers in symmetric or asymmetric configurations shows that spatially symmetric interhemispheric activity is required for appropriate callosal targeting. Our findings reveal a principle governing axon targeting, where spatially balanced activity between regions is required to establish their appropriate connectivity.
双侧感觉和联合大脑处理的整合是通过胼胝体在两个半球的同源区域之间的精确连接来实现的。这些连接在出生后形成,而在关键期内单侧剥夺感觉或自发皮质活动会严重破坏胼胝体连接。然而,对于早期活动如何影响精确的回路形成,我们知之甚少。在这里,我们使用在体电穿孔报告基因、光遗传学构建体以及直接破坏胼胝体细胞的活动,并结合胡须切除,表明平衡的半球间活动,而不仅仅是任一半球的完整皮质活动,是功能性胼胝体靶向所必需的。此外,对称或不对称配置的双侧胡须切除表明,空间对称的半球间活动对于适当的胼胝体靶向是必需的。我们的发现揭示了一个支配轴突靶向的原则,即区域之间空间平衡的活动是建立其适当连接所必需的。