Department of Biosciences, University of Oslo, Oslo, 0317, Norway.
Center for Integrative Neuroplasticity, University of Oslo, Oslo, 0317, Norway.
eNeuro. 2017 Jun 7;4(3). doi: 10.1523/ENEURO.0379-16.2017. eCollection 2017 May-Jun.
Perineuronal nets (PNNs) are specialized extracellular matrix (ECM) structures that condense around the soma and proximal dendrites of subpopulations of neurons. Emerging evidence suggests that they are involved in regulating brain plasticity. However, the expression of PNNs varies between and within brain areas. A lack of quantitative studies describing the distribution and cell-specificity of PNNs makes it difficult to reveal the functional roles of PNNs. In the current study, we examine the distribution of PNNs and the identity of PNN-enwrapped neurons in three brain areas with different cognitive functions: the dorsal hippocampus, medial entorhinal cortex (mEC) and primary visual cortex (V1). We compared rats and mice as knowledge from these species are often intermingled. The most abundant expression of PNNs was found in the mEC and V1, while dorsal hippocampus showed strikingly low levels of PNNs, apart from dense expression in the CA2 region. In hippocampus we also found apparent species differences in expression of PNNs. While we confirm that the PNNs enwrap parvalbumin-expressing (PV+) neurons in V1, we found that they mainly colocalize with excitatory CamKII-expressing neurons in CA2. In mEC, we demonstrate that in addition to PV+ cells, the PNNs colocalize with reelin-expressing stellate cells. We also show that the maturation of PNNs in mEC coincides with the formation of grid cell pattern, while PV+ cells, unlike in other cortical areas, are present from early postnatal development. Finally, we demonstrate considerable effects on the number of PSD-95-gephyrin puncta after enzymatic removal of PNNs.
周围神经毡(PNNs)是一种特殊的细胞外基质(ECM)结构,围绕着神经元亚群的胞体和近端树突凝聚。新出现的证据表明,它们参与调节大脑的可塑性。然而,PNNs 的表达在不同脑区和脑区内是不同的。缺乏描述 PNNs 分布和细胞特异性的定量研究,使得揭示 PNNs 的功能作用变得困难。在本研究中,我们检查了三个具有不同认知功能的脑区(背侧海马体、内侧内嗅皮层(mEC)和初级视觉皮层(V1))中 PNNs 的分布和 PNN 包裹神经元的身份。我们比较了大鼠和小鼠,因为这两个物种的知识往往是交织在一起的。在 mEC 和 V1 中发现了最丰富的 PNNs 表达,而背侧海马体除了 CA2 区域密集表达外,PNNs 的表达水平明显较低。在海马体中,我们还发现了 PNNs 表达的明显种间差异。虽然我们证实 PNNs 包裹 V1 中的 parvalbumin 表达(PV+)神经元,但我们发现它们主要与 CA2 中表达兴奋性 CamKII 的神经元共定位。在 mEC 中,我们证明除了 PV+细胞外,PNNs 还与 reelin 表达的星型细胞共定位。我们还表明,mEC 中 PNNs 的成熟与网格细胞模式的形成同时发生,而与其他皮质区不同的是,PV+细胞从出生后早期就存在。最后,我们证明了酶去除 PNNs 后 PSD-95- 神经胶质蛋白 puncta 的数量有相当大的影响。