Centre Hospitalier Universitaire Sainte-Justine and Université de Montréal, Montréal, Quebec H3T 1C5, Canada.
J Neurosci. 2012 Jan 18;32(3):911-8. doi: 10.1523/JNEUROSCI.4352-11.2012.
Neural activity guides the patterning of neuron synaptic territory in the developing nervous system. Evidence supporting this hypothesis comes from numerous studies on projection neurons in neuromuscular and visual systems. It is unknown whether the innervation field of GABAergic interneurons, which forms local dense innervations, follows similar rules. Cortical basket cells innervate hundreds of pyramidal cell somata and proximal dendrites. Thanks to this connectivity pattern, they can tightly control neural excitability and synchronization. Here we show that reducing excitation, and thus neurotransmitter release, in mouse cortical single basket cells in slice cultures decreases the number of innervated cells without changing the pattern of perisomatic innervation, both at the peak and after the proliferation phase of perisomatic synapse formation. Conversely, suppressing neurotransmitter release in single basket cells can have completely opposite effects depending on the developmental stage. Our results reveal a remarkably specific and age-dependent role of neural activity and neurotransmission levels in the establishment of the synaptic territory of cortical GABAergic cells.
神经活动指导发育中神经系统中神经元突触区域的模式形成。支持这一假说的证据来自于神经肌肉和视觉系统中投射神经元的大量研究。目前尚不清楚 GABA 能中间神经元的支配领域(形成局部密集支配)是否遵循类似的规则。皮质篮状细胞支配着数百个锥体神经元胞体和近端树突。由于这种连接模式,它们可以紧密控制神经元的兴奋性和同步性。在这里,我们展示了在切片培养物中减少小鼠皮质单个篮状细胞的兴奋,即减少神经递质释放,可以减少被支配的细胞数量,而不改变体细胞周围神经支配的模式,无论是在体细胞周围突触形成的峰值期还是增殖期之后。相反,抑制单个篮状细胞中的神经递质释放可能会根据发育阶段产生完全相反的效果。我们的研究结果揭示了神经活动和神经递质水平在建立皮质 GABA 能细胞突触区域方面具有显著的特异性和年龄依赖性作用。