Department of Psychiatry, Erasmus MC, 3000 CA Rotterdam, The Netherlands.
Erasmus Optical Imaging Centre, Erasmus University Medical Center, 3000 CA Rotterdam, The Netherlands.
Cereb Cortex. 2017 Oct 1;27(10):5001-5013. doi: 10.1093/cercor/bhx203.
Myelination, the insulating ensheathment of axons by oligodendrocytes, is thought to both optimize signal propagation and provide metabolic support. Despite the well-established physiological importance of myelination to neuronal function, relatively little is known about the myelination of GABAergic interneurons in the cerebral cortex. Here, we report that a large fraction of myelin in mouse cerebral cortex ensheaths GABAergic interneurons, reaching up to 80% in hippocampal subregions. Moreover, we find that a very high proportion of neocortical and hippocampal parvalbumin (PV) interneurons exhibit axonal myelination. Using a combination of intracellular recordings and biocytin labeling of ex vivo human neocortex, we also confirm that axons of fast-spiking PV interneurons are extensively myelinated in the human brain. PV interneuron myelination in both mice and humans exhibits a stereotyped topography with a bias towards proximal axonal segments and relatively short internodes (~27 μm) interspersed with branch points. Interestingly, myelin-deficient Shiverer mice exhibit an increased density and more proximal location of en passant boutons, suggesting that myelination might function in part to regulate synapse formation along PV interneuron axons. Taken together, fast-spiking interneuron myelination is likely to have broad implications for cerebral cortex function in health and disease.
少突胶质细胞对轴突的髓鞘形成是一种绝缘包裹,被认为既可以优化信号传递,又可以提供代谢支持。尽管髓鞘形成对神经元功能具有明确的生理重要性,但关于大脑皮层 GABA 能中间神经元的髓鞘形成,人们知之甚少。在这里,我们报告说,大量的少突胶质细胞髓鞘包裹 GABA 能中间神经元,在海马亚区达到 80%。此外,我们发现相当大比例的新皮层和海马区的 parvalbumin(PV)中间神经元表现出轴突髓鞘形成。通过结合细胞内记录和离体人脑的生物胞素标记,我们还证实了快速放电 PV 中间神经元的轴突在人类大脑中广泛髓鞘化。在小鼠和人类中,PV 中间神经元的髓鞘形成具有一种刻板的拓扑结构,偏向于近端轴突段和相对较短的节间(约 27μm),散布着分支点。有趣的是,髓鞘缺失的 Shiverer 小鼠表现出更多的 en passant 末梢的密度和更靠近近端的位置,这表明髓鞘形成可能部分作用是调节 PV 中间神经元轴突上的突触形成。总之,快速放电中间神经元的髓鞘形成可能对健康和疾病状态下的大脑皮层功能具有广泛的影响。