Neurobiology Unit and Program in Basic and Applied Neurosciences, Department of Cell Biology, Universitat de València, 46100 Burjassot, Spain.
Cereb Cortex. 2011 May;21(5):1028-41. doi: 10.1093/cercor/bhq177. Epub 2010 Sep 15.
Principal neurons in the adult cerebral cortex undergo synaptic, dendritic, and spine remodeling in response to different stimuli, and several reports have demonstrated that the polysialylated form of the neural cell adhesion molecule (PSA-NCAM) participates in these plastic processes. However, there is only limited information on the expression of this molecule on interneurons and on its role in the structural plasticity of these cells. We have found that PSA-NCAM is expressed in mature interneurons widely distributed in all the extension of the cerebral cortex and have excluded the expression of this molecule in most principal cells. Although PSA-NCAM expression is generally considered a marker of immature neurons, birth-dating analyses reveal that these interneurons do not have an adult or perinatal origin and that they are generated during embryonic development. PSA-NCAM expressing interneurons show reduced density of perisomatic and peridendritic puncta expressing different synaptic markers and receive less perisomatic synapses, when compared with interneurons lacking this molecule. Moreover, they have reduced dendritic arborization and spine density. These data indicate that PSA-NCAM expression is important for the connectivity of interneurons in the adult cerebral cortex and that its regulation may play an important role in the structural plasticity of inhibitory networks.
成年大脑皮层中的主要神经元会针对不同的刺激进行突触、树突和棘突重塑,有几项研究报告表明,神经细胞黏附分子(NCAM)的多涎酸化形式参与了这些可塑性过程。然而,关于这种分子在中间神经元上的表达及其在这些细胞结构可塑性中的作用,信息十分有限。我们发现,PSA-NCAM 存在于广泛分布于大脑皮层所有延伸部位的成熟中间神经元中,并且排除了这种分子在大多数主要细胞中的表达。尽管 PSA-NCAM 的表达通常被认为是不成熟神经元的标志物,但出生时间分析表明,这些中间神经元并非成年或围产期起源,而是在胚胎发育过程中产生的。与缺乏这种分子的中间神经元相比,表达 PSA-NCAM 的中间神经元的体旁和树突棘点状表达不同突触标记的密度降低,并且接收的体旁突触较少。此外,它们的树突分支和棘突密度也降低。这些数据表明,PSA-NCAM 的表达对于成年大脑皮层中中间神经元的连接性非常重要,其调控可能在抑制性网络的结构可塑性中发挥重要作用。