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细口径初级传入纤维终末的AMPA受体亚基

AMPA receptor subunits underlying terminals of fine-caliber primary afferent fibers.

作者信息

Popratiloff A, Weinberg R J, Rustioni A

机构信息

Department of Cell Biology and Anatomy, University of North Carolina, Chapel Hill 27599, USA.

出版信息

J Neurosci. 1996 May 15;16(10):3363-72. doi: 10.1523/JNEUROSCI.16-10-03363.1996.

Abstract

Postembedding immunogold electron microscopy was used to determine the relation of primary afferent terminals in superficial laminae of the spinal dorsal horn with AMPA receptor subunits. Immunogold particles coding for GluR1 and GluR2/3 were concentrated at synaptic sites, between 30 nm outside and 40 nm inside the postsynaptic membrane. Immunopositive synapses displayed round vesicles and asymmetric specializations, characteristic of terminals releasing excitatory neurotransmitters; symmetric synapses, characteristic of terminals releasing inhibitory amino acids, were immunonegative. In superficial laminae, large terminals of two main types at the center of a synaptic glomerulus originate from primary afferents: C1 terminals are mainly endings of unmyelinated afferent fibers; C2 terminals are mainly endings of thinly myelinated afferent fibers. Terminals of both types were presynaptic to AMPA subunits, but in different proportions: C1 terminals were related more to GluR1 than to GluR2/3, whereas the reverse was true for C2 terminals. These results suggest that functional properties of peripheral afferents to the spinal cord may be specified by the density and combination of receptor subunits in the postsynaptic membrane, and raise the possibility that calcium-permeable AMPA channels may play a special role in the mediation of sensory input by unmyelinated fibers.

摘要

采用包埋后免疫金电子显微镜技术来确定脊髓背角浅层初级传入终末与AMPA受体亚基之间的关系。编码GluR1和GluR2/3的免疫金颗粒集中在突触部位,位于突触后膜外侧30纳米至内侧40纳米之间。免疫阳性突触呈现圆形囊泡和不对称特化结构,这是释放兴奋性神经递质的终末的特征;释放抑制性氨基酸的终末所特有的对称突触则呈免疫阴性。在浅层,突触小球中心的两种主要类型的大终末源自初级传入纤维:C1终末主要是无髓传入纤维的终末;C2终末主要是薄髓传入纤维的终末。这两种类型的终末都是AMPA亚基的突触前成分,但比例不同:C1终末与GluR1的相关性高于与GluR2/3的相关性,而C2终末则相反。这些结果表明,脊髓外周传入纤维的功能特性可能由突触后膜中受体亚基的密度和组合所决定,并增加了钙通透性AMPA通道可能在无髓纤维介导感觉输入中发挥特殊作用的可能性。

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