Di Cristo Graziella, Wu Caizhi, Chattopadhyaya Bidisha, Ango Fabrice, Knott Graham, Welker Egbert, Svoboda Karel, Huang Z Josh
Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA.
Nat Neurosci. 2004 Nov;7(11):1184-6. doi: 10.1038/nn1334. Epub 2004 Oct 10.
Distinct classes of GABAergic synapses target restricted subcellular domains, thereby differentially regulating the input, integration and output of principal neurons, but the underlying mechanism for such synapse segregation is unclear. Here we show that the distributions of two major classes of GABAergic synapses along the perisomatic and dendritic domains of pyramidal neurons were indistinguishable between primary visual cortex in vivo and cortical organotypic cultures. Therefore, subcellular synapse targeting is independent of thalamic input and probably involves molecular labels and experience-independent forms of activity.
不同类别的GABA能突触靶向特定的亚细胞结构域,从而以不同方式调节主神经元的输入、整合和输出,但这种突触分离的潜在机制尚不清楚。在这里,我们表明,在体内初级视觉皮层和皮质器官型培养物中,两类主要的GABA能突触沿锥体神经元的胞周和树突结构域的分布没有区别。因此,亚细胞突触靶向独立于丘脑输入,可能涉及分子标记和与经验无关的活动形式。