Department of Brain and Cognitive Sciences, Picower Institute of Learning and Memory, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.
Department of Neurosciences, University of New Mexico School of Medicine, Albuquerque, New Mexico, USA.
Glia. 2021 Jul;69(7):1723-1735. doi: 10.1002/glia.23987. Epub 2021 Mar 6.
The uptake of glutamate by astrocytes actively shapes synaptic transmission, however its role in the development and plasticity of neuronal circuits remains poorly understood. The astrocytic glutamate transporter, GLT1 is the predominant source of glutamate clearance in the adult mouse cortex. Here, we examined the structural and functional development of the visual cortex in GLT1 heterozygous (HET) mice using two-photon microscopy, immunohistochemistry and slice electrophysiology. We find that though eye-specific thalamic axonal segregation is intact, binocular refinement in the primary visual cortex is disrupted. Eye-specific responses to visual stimuli in GLT1 HET mice show altered binocular matching, with abnormally high responses to ipsilateral compared to contralateral eye stimulation and a greater mismatch between preferred orientation selectivity of ipsilateral and contralateral eye responses. Furthermore, we observe an increase in dendritic spine density in the basal dendrites of layer 2/3 excitatory neurons suggesting aberrant spine pruning. Monocular deprivation induces atypical ocular dominance plasticity in GLT1 HET mice, with an unusual depression of ipsilateral open eye responses; however, this change in ipsilateral responses correlates well with an upregulation of GLT1 protein following monocular deprivation. These results demonstrate that a key function of astrocytic GLT1 function during development is the experience-dependent refinement of ipsilateral eye inputs relative to contralateral eye inputs in visual cortex.
星形胶质细胞摄取谷氨酸能主动塑造突触传递,但它在神经元回路的发育和可塑性中的作用仍知之甚少。星形胶质细胞谷氨酸转运体 GLT1 是成年小鼠大脑皮层中谷氨酸清除的主要来源。在这里,我们使用双光子显微镜、免疫组织化学和切片电生理学检查了 GLT1 杂合子(HET)小鼠视觉皮层的结构和功能发育。我们发现,尽管丘脑的眼特异性轴突分离是完整的,但初级视觉皮层的双眼精细调节被破坏了。GLT1 HET 小鼠对视觉刺激的眼特异性反应表现出异常的双眼匹配,同侧刺激的反应异常高于对侧,同侧和对侧眼反应的优势选择性之间的不匹配更大。此外,我们观察到第 2/3 层兴奋性神经元基底树突的树突棘密度增加,表明棘突修剪异常。单眼剥夺诱导 GLT1 HET 小鼠出现非典型的眼优势可塑性,对同侧睁眼反应异常抑制;然而,同侧反应的这种变化与单眼剥夺后 GLT1 蛋白的上调密切相关。这些结果表明,星形胶质细胞 GLT1 功能在发育过程中的一个关键作用是在视觉皮层中,相对于对侧眼输入,依赖经验对同侧眼输入进行精细调节。