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来源于正常和亨廷顿病(Q175)小鼠纹状体皮质传入纤维的快速 iGlu 成像的谷氨酸清除受损的单突触标志物。

Single Synapse Indicators of Impaired Glutamate Clearance Derived from Fast iGlu Imaging of Cortical Afferents in the Striatum of Normal and Huntington (Q175) Mice.

机构信息

Cluster of Excellence Neurocure, Charité-Universitätsmedizin Berlin, 10117 Berlin, Germany.

Molecular and Clinical Sciences Research Institute, St. George's, University of London, London SW17 0RE, United Kingdom, and.

出版信息

J Neurosci. 2019 May 15;39(20):3970-3982. doi: 10.1523/JNEUROSCI.2865-18.2019. Epub 2019 Feb 28.

Abstract

Changes in the balance between glutamate (Glu) release and uptake may stimulate synaptic reorganization and even synapse loss. In the case of neurodegeneration, a mismatch between astroglial Glu uptake and presynaptic Glu release could be detected if both parameters were assessed independently and at a single-synapse level. This has now become possible due to a new imaging assay with the genetically encoded ultrafast Glu sensor iGlu We report findings from individual corticostriatal synapses in acute slices prepared from mice of either sex that were >1 year of age. Contrasting patterns of short-term plasticity and a size criterion identified two classes of terminals, presumably corresponding to the previously defined IT (intratelencephalic) and PT (pyramidal tract) synapses. The latter exhibited a higher degree of frequency potentiation/residual Glu accumulation and were selected for our first iGlu single-synapse study in Q175 mice, a model of Huntington's disease (HD). In HD mice, the decay time constant of the perisynaptic Glu concentration (TauD), as an indicator of uptake, and the peak iGlu amplitude, as an indicator of release, were prolonged and reduced, respectively. Treatment of WT preparations with the astrocytic Glu uptake blocker TFB-TBOA (100 nm) mimicked the TauD changes in homozygotes. Considering the largest TauD values encountered in WT, ∼40% of PT synapses tested in Q175 heterozygotes can be classified as dysfunctional. Moreover, HD but not WT synapses exhibited a positive correlation between TauD and the peak amplitude of iGlu Finally, EAAT2 (excitatory amino acid transport protein 2) immunoreactivity was reduced next to corticostriatal terminals. Thus, astrocytic Glu transport remains a promising target for therapeutic intervention. Alterations in astrocytic Glu uptake can play a role in synaptic plasticity and neurodegeneration. Until now, the sensitivity of synaptic responses to pharmacological transport block and the resulting activation of NMDA receptors were regarded as reliable evidence for a mismatch between synaptic uptake and release. But the latter parameters are interdependent. Using a new genetically encoded sensor to monitor extracellular glutamate concentration ([Glu]) at individual corticostriatal synapses, we can now quantify the time constant of perisynaptic [Glu] decay (as an indicator of uptake) and the maximal [Glu] elevation next to the active zone (as an indicator of Glu release). The results provide a positive answer to the hitherto unresolved question of whether neurodegeneration (e.g., Huntington's disease) associates with a glutamate uptake deficit at tripartite excitatory synapses.

摘要

谷氨酸(Glu)释放和摄取之间的平衡变化可能会刺激突触重组甚至突触丢失。在神经退行性变的情况下,如果分别在单个突触水平上独立评估这两个参数,就可以检测到星形胶质细胞 Glu 摄取和突触前 Glu 释放之间的不匹配。由于新的成像测定法,使用遗传编码的超快 Glu 传感器 iGlu 现在可以实现这一点。我们报告了来自年龄大于 1 岁的雄性和雌性小鼠急性切片中单个皮质纹状体突触的发现。短期可塑性的对比模式和大小标准确定了两种类型的末端,推测对应于先前定义的 IT(脑内)和 PT(锥体束)突触。后者表现出更高程度的频率增强/残留 Glu 积累,并被选为我们在 Q175 小鼠(亨廷顿病的模型)中的第一个 iGlu 单突触研究的对象。在 HD 小鼠中,作为摄取指标的突触周 Glu 浓度的衰减时间常数(TauD)和作为释放指标的 iGlu 峰值幅度分别延长和减少。用星形胶质细胞 Glu 摄取阻滞剂 TFB-TBOA(100nm)处理 WT 制剂模拟了同型纯合子的 TauD 变化。考虑到 WT 中遇到的最大 TauD 值,在 Q175 杂合子中测试的大约 40%的 PT 突触可以被归类为功能失调。此外,HD 而不是 WT 突触表现出 TauD 与 iGlu 峰值幅度之间的正相关。最后,靠近皮质纹状体末端的兴奋性氨基酸转运蛋白 2(EAAT2)免疫反应性降低。因此,星形胶质细胞 Glu 转运仍然是治疗干预的有希望的目标。星形胶质细胞 Glu 摄取的改变可能在突触可塑性和神经退行性变中起作用。到目前为止,突触反应对药理学转运阻断的敏感性以及由此产生的 NMDA 受体激活被认为是突触摄取和释放之间不匹配的可靠证据。但是,后两个参数是相互依赖的。使用新的遗传编码传感器在单个皮质纹状体突触上监测细胞外谷氨酸浓度([Glu]),我们现在可以量化突触周[Glu]衰减的时间常数(作为摄取的指标)和靠近活性区的最大[Glu]升高(作为 Glu 释放的指标)。这些结果对迄今为止尚未解决的问题给出了肯定的答案,即神经退行性变(例如亨廷顿病)是否与三部分兴奋性突触的谷氨酸摄取缺陷有关。

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本文引用的文献

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Astroglial Glutamate Signaling and Uptake in the Hippocampus.海马体中的星形胶质细胞谷氨酸信号传导与摄取
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