Institute for Neuroanatomy,University Medicine Göttingen, Georg-August-University, Kreuzbergring 36, D-37075 Göttingen, Germany.
Cereb Cortex. 2017 Nov 1;27(11):5353-5368. doi: 10.1093/cercor/bhx220.
Neocortical vasoactive intestinal polypeptide (VIP) expressing cells are a diverse subpopulation of GABAergic interneurons issuing distinct axonal projections. They are known to inhibit other types of interneurons as well as excitatory principal neurons and possess a disinhibitory net effect in cortical circuits. In order to elucidate their targeting specificity, the output connectivity of VIP interneurons was studied at the subcellular level in barrel cortex of interneuron-specific Cre-driver mice, using pre- and postembedding electron microscopy. Systematically sampling VIP boutons across all layers, we found a substantial proportion of the innervated subcellular structures were dendrites (80%), with somata (13%), and spines (7%) being much less targeted. In layer VI, a high proportion of axosomatic synapses was found (39%). GABA-immunopositive ratio was quantified among the targets using statistically validated thresholds: only 37% of the dendrites, 7% of the spines, and 26% of the somata showed above-threshold immunogold labeling. For the main target structure "dendrite", a higher proportion of GABAergic subcellular profiles existed in deep than in superficial layers. In conclusion, VIP interneurons innervate non-GABAergic excitatory neurons and interneurons at their subcellular domains with layer-dependent specificity. This suggests a diverse output of VIP interneurons, which predicts multiple functionality in cortical circuitry beyond disinhibition.
新皮层血管活性肠肽 (VIP) 表达细胞是 GABA 能中间神经元的一个多样化亚群,发出独特的轴突投射。已知它们抑制其他类型的中间神经元以及兴奋性主神经元,并在皮质回路中具有抑制性净效应。为了阐明其靶向特异性,在神经元特异性 Cre 驱动小鼠的桶状皮层中,使用预嵌入和后嵌入电子显微镜,在亚细胞水平研究了 VIP 中间神经元的输出连接。系统地对所有层的 VIP 终末进行采样,我们发现受支配的亚细胞结构的很大一部分是树突(80%),而体(13%)和棘突(7%)的靶向程度要低得多。在第 VI 层中,发现了大量的轴突-体突触(39%)。使用经过统计学验证的阈值,对目标中的 GABA 免疫阳性比进行了量化:只有 37%的树突、7%的棘突和 26%的体显示出超过阈值的免疫金标记。对于主要的目标结构“树突”,深层的 GABA 能亚细胞形态比浅层的更多。总之,VIP 中间神经元在其亚细胞域中支配非 GABA 能兴奋性神经元和中间神经元,具有与层相关的特异性。这表明 VIP 中间神经元的输出具有多样性,这预示着它们在皮质回路中的功能不仅仅是抑制。