Graziano Alessandro, Liu Xiao-Bo, Murray Karl D, Jones Edward G
Center for Neuroscience, University of California Davis, Davis, California 95616-8798, USA.
J Comp Neurol. 2008 Mar 10;507(2):1258-76. doi: 10.1002/cne.21592.
The ventral posterior nucleus of the thalamus (VP) receives two major sets of excitatory inputs, one from the ascending somatosensory pathways originating in the dorsal horn, dorsal column nuclei, and trigeminal nuclei, and the other originating from the cerebral cortex. Both systems use glutamate as neurotransmitter, as do the thalamocortical axons relaying somatosensory information from the VP to the primary somatosensory cortex (SI). The synapses formed by these projection systems differ anatomically, physiologically, and in their capacity for short-term synaptic plasticity. Glutamate uptake into synaptic vesicles and its release at central synapses depend on two isoforms of vesicular glutamate transporters, VGluT1 and VGluT2. Despite ample evidence of their complementary distribution, some instances exist of co-localization in the same brain areas or at the same synapses. In the thalamus, the two transcripts coexist in cells of the VP and other nuclei but not in the posterior or intralaminar nuclei. We show that the two isoforms are completely segregated at VP synapses, despite their widespread expression throughout the dorsal and ventral thalamus. We present immunocytochemical, ultrastructural, gene expression, and connectional evidence that VGluT1 in the VP is only found at corticothalamic synapses, whereas VGluT2 is only found at terminals made by axons originating in the spinal cord and brainstem. By contrast, the two VGluT isoforms are co-localized in thalamocortical axon terminals targeting layer IV, but not in those targeting layer I, suggesting the presence of two distinct projection systems related to the core/matrix pattern of organization of thalamocortical connectivity described in other mammals.
丘脑腹后核(VP)接受两组主要的兴奋性输入,一组来自起源于背角、薄束核和三叉神经核的躯体感觉上行通路,另一组来自大脑皮层。这两个系统都使用谷氨酸作为神经递质,从VP向初级躯体感觉皮层(SI)传递躯体感觉信息的丘脑皮质轴突也是如此。这些投射系统形成的突触在解剖学、生理学以及短期突触可塑性方面存在差异。谷氨酸摄取到突触小泡及其在中枢突触处的释放取决于囊泡谷氨酸转运体的两种亚型,即VGluT1和VGluT2。尽管有充分证据表明它们分布互补,但在同一脑区或同一突触中存在一些共定位的情况。在丘脑中,这两种转录本共存于VP和其他核团的细胞中,但在后核或板内核中不存在。我们发现,尽管这两种亚型在整个背侧和腹侧丘脑广泛表达,但在VP突触处它们完全分离。我们提供了免疫细胞化学、超微结构、基因表达和连接证据,表明VP中的VGluT1仅存在于皮质丘脑突触中,而VGluT2仅存在于起源于脊髓和脑干的轴突形成的终末中。相比之下,这两种VGluT亚型在靶向第IV层的丘脑皮质轴突终末中共定位,但在靶向第I层的终末中不共定位,这表明存在与其他哺乳动物中描述的丘脑皮质连接组织的核心/基质模式相关的两种不同投射系统。