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基底神经节-丘脑通路中高效γ-氨基丁酸能传递的结构关联

Structural correlates of efficient GABAergic transmission in the basal ganglia-thalamus pathway.

作者信息

Bodor Agnes L, Giber Kristóf, Rovó Zita, Ulbert István, Acsády László

机构信息

Department of Cellular and Network Neurobiology, Institute of Experimental Medicine, Hungarian Academy of Sciences, H-1450 Budapest, Hungary.

出版信息

J Neurosci. 2008 Mar 19;28(12):3090-102. doi: 10.1523/JNEUROSCI.5266-07.2008.

Abstract

Giant inhibitory terminals with multiple synapses, the counterparts of excitatory "detonator" or "driver" terminals, have not been described in the forebrain. Using three-dimensional reconstructions of electron microscopic images, we quantitatively characterize a GABAergic pathway that establishes synaptic contacts exclusively via multiple synapses. Axon terminals of the nigrothalamic pathway formed, on average, 8.5 synapses on large-diameter dendrites and somata of relay cells in the ventromedial nucleus of the rat thalamus. All synapses of a given terminal converged on a single postsynaptic element. The vast majority of the synapses established by a single terminal were not separated by astrocytic processes. Nigrothalamic terminals in the macaque monkey showed the same ultrastructural features both in qualitative and quantitative terms (the median number of synapse per target was also 8.5). The individual synapses were closely spaced in both species. The nearest-neighbor synaptic distances were 169 nm in the rat and 178 nm in the monkey. The average number of synapses within 0.75 microm from any given synapse was 3.8 in the rat and 3.5 in the monkey. The arrangement of synapses described in this study creates favorable conditions for intersynaptic spillover of GABA among the multiple synapses of a single bouton, which can result in larger charge transfer. This could explain faithful and efficient GABAergic signal transmission in the nigrothalamic pathway in the healthy condition and during Parkinson's disease. In addition, our structural data suggest that the rodent nigrothalamic pathway can be a valid model of the primate condition, when the mechanism of GABAergic transmission is studied.

摘要

具有多个突触的巨大抑制性终末,即兴奋性“雷管”或“驱动”终末的对应物,在前脑尚未被描述。通过电子显微镜图像的三维重建,我们定量表征了一条仅通过多个突触建立突触联系的GABA能通路。黑质丘脑通路的轴突终末平均在大鼠丘脑腹内侧核中继细胞的大直径树突和胞体上形成8.5个突触。给定终末的所有突触都汇聚在单个突触后元件上。单个终末建立的绝大多数突触没有被星形胶质细胞突起分隔。猕猴的黑质丘脑终末在定性和定量方面都表现出相同的超微结构特征(每个靶点的突触中位数也是8.5)。在这两个物种中,单个突触都紧密排列。大鼠中最近邻突触距离为169纳米,猴子中为178纳米。在大鼠中,距任何给定突触0.75微米内的突触平均数量为3.8个,在猴子中为3.5个。本研究中描述的突触排列为单个轴突终扣的多个突触之间GABA的突触间溢出创造了有利条件,这可能导致更大的电荷转移。这可以解释在健康状态和帕金森病期间黑质丘脑通路中GABA能信号的可靠和高效传递。此外,我们的结构数据表明,在研究GABA能传递机制时,啮齿动物的黑质丘脑通路可以作为灵长类动物情况的有效模型。

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