Institute of Neuroscience, National Yang-Ming University, Taipei, Taiwan.
Institute of Biomedical Informatics, National Yang-Ming University, Taipei, Taiwan.
J Comp Neurol. 2021 Jul 1;529(10):2658-2675. doi: 10.1002/cne.25116. Epub 2021 Feb 2.
The hippocampus is a key brain structure for cognitive and emotional functions. Among the hippocampal subregions, the dentate gyrus (DG) is the first station that receives multimodal sensory information from the cortex. Local-circuit inhibitory GABAergic interneurons (INs) regulate the excitation-inhibition balance in the DG principal neurons (PNs) and therefore are critical for information processing. Similar to PNs, GABAergic INs also receive distinct inhibitory inputs. Among various classes of INs, vasoactive intestinal polypeptide-expressing (VIP ) INs preferentially target other INs in several brain regions and thereby directly modulate the GABAergic system. However, the morpho-physiological characteristics and postsynaptic targets of VIP INs in the DG are poorly understood. Here, we report that VIP INs in the mouse DG are highly heterogeneous based on their morpho-physiological characteristics. In approximately two-thirds of morphologically reconstructed cells, their axons ramify in the hilus. The remaining cells project their axons exclusively to the molecular layer (15%), to both the molecular layer and hilus (10%), or throughout the entire DG layers (8%). Generally, VIP INs display variable intrinsic properties and discharge patterns without clear correlation with their morphologies. Finally, VIP INs are recruited with a long latency in response to theta-band cortical inputs and preferentially innervate GABAergic INs over glutamatergic PNs. In summary, VIP INs in the DG are composed of highly diverse subpopulations and control the DG output via disinhibition.
海马体是认知和情感功能的关键脑区结构。在海马亚区中,齿状回(DG)是接收来自皮层的多模态感觉信息的第一站。局部回路抑制性 GABA 能中间神经元(INs)调节 DG 主神经元(PNs)的兴奋-抑制平衡,因此对信息处理至关重要。与 PNs 类似,GABA 能 INs 也接收不同的抑制性输入。在各种 IN 类中,血管活性肠肽表达(VIP)INs 优先靶向大脑中几个区域的其他 INs,从而直接调节 GABA 能系统。然而,DG 中的 VIP INs 的形态-生理特征和突触后靶标知之甚少。在这里,我们报告说,基于形态-生理特征,DG 中的 VIP INs 高度异质。在大约三分之二的形态重建细胞中,其轴突在齿状回的门区分支。其余的细胞将它们的轴突仅投射到分子层(15%),投射到分子层和门区(10%),或投射到整个 DG 层(8%)。通常,VIP INs 显示出可变的内在特性和放电模式,与它们的形态没有明显的相关性。最后,VIP INs 在响应皮质θ带输入时被募集,潜伏期较长,并且优先支配 GABA 能 INs 而不是谷氨酸能 PNs。综上所述,DG 中的 VIP INs 由高度多样化的亚群组成,通过去抑制控制 DG 的输出。