Oda Satoko, Funato Hiromasa, Sato Fumi, Adachi-Akahane Satomi, Ito Masanori, Takase Kenkichi, Kuroda Masaru
Department of Anatomy, School of Medicine, Toho University, Tokyo, 143-8540, Japan.
J Comp Neurol. 2014 Jun 15;522(9):2089-106. doi: 10.1002/cne.23519.
Vesicular glutamate transporter isoforms, VGluT1-VGluT3, accumulate glutamate into synaptic vesicles and are considered to be important molecules in glutamatergic transmission. Among them, VGluT2 mRNA is expressed predominantly throughout the dorsal thalamus, whereas VGluT1 mRNA is expressed in a few thalamic nuclei. In the thalamic nuclei that project to the retrosplenial cortex (RSC), VGluT1 mRNA is expressed strongly in the anterodorsal thalamic nucleus (AD), is expressed moderately in the anteroventral and laterodorsal thalamic nuclei, and is not expressed in the anteromedial thalamic nucleus. Thus, it has been strongly suggested that a subset of thalamocortical projections to RSC possesses both VGluT1 and VGluT2. In this study, double-labeled neuronal somata showing both VGluT1 and VGluT2 immunolabelings were found exclusively in the ventral region of AD (vAD). Many double-labeled axon terminals were also found in two major targets of vAD, the rostral part of the reticular thalamic nucleus and layers Ia and III-IV of the retrosplenial granular b cortex (RSGb). Some were also found in layer Ia of the retrosplenial granular a cortex (RSGa). These axon terminals contain significant amounts of both VGluTs. Because the subset of thalamocortical projections to RSC has a unique molecular basis in the glutamatergic transmission system, it might play an important role in the higher cognitive functions processed in the RSC. Furthermore, double-labeled axon terminals of a different type were distributed in RSGb and RSGa. Because they are small and the immunoreactivity of VGluT2 is significantly weaker than that of VGluT1, they seemed to be a subset of corticocortical terminals.
囊泡型谷氨酸转运体亚型VGluT1 - VGluT3将谷氨酸积累到突触小泡中,被认为是谷氨酸能传递中的重要分子。其中,VGluT2 mRNA主要在整个背侧丘脑表达,而VGluT1 mRNA在少数丘脑核中表达。在投射到压后皮质(RSC)的丘脑核中,VGluT1 mRNA在前背侧丘脑核(AD)中强烈表达,在前腹侧和外侧背侧丘脑核中中等表达,在前内侧丘脑核中不表达。因此,强烈提示投射到RSC的丘脑皮质投射的一个子集同时具有VGluT1和VGluT2。在本研究中,仅在AD的腹侧区域(vAD)发现了同时显示VGluT1和VGluT2免疫标记的双标记神经元胞体。在vAD的两个主要靶标,即丘脑网状核的嘴侧部分以及压后颗粒b皮质(RSGb)的Ia层和III - IV层中也发现了许多双标记轴突终末。在压后颗粒a皮质(RSGa)的Ia层中也发现了一些。这些轴突终末含有大量的两种VGluT。由于投射到RSC的丘脑皮质投射子集在谷氨酸能传递系统中具有独特的分子基础,它可能在RSC中处理的高级认知功能中发挥重要作用。此外,不同类型的双标记轴突终末分布在RSGb和RSGa中。由于它们较小且VGluT2的免疫反应性明显弱于VGluT1,它们似乎是皮质 - 皮质终末的一个子集。