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下丘中γ-氨基丁酸能和兴奋性突触的超微结构特征

Ultrastructural characterization of GABAergic and excitatory synapses in the inferior colliculus.

作者信息

Nakamoto Kyle T, Mellott Jeffrey G, Killius Jeanette, Storey-Workley Megan E, Sowick Colleen S, Schofield Brett R

机构信息

Department of Anatomy and Neurobiology, Northeast Ohio Medical University Rootstown, OH, USA.

出版信息

Front Neuroanat. 2014 Oct 15;8:108. doi: 10.3389/fnana.2014.00108. eCollection 2014.

Abstract

In the inferior colliculus (IC) cells integrate inhibitory input from the brainstem and excitatory input from both the brainstem and auditory cortex. In order to understand how these inputs are integrated by IC cells identification of their synaptic arrangements is required. We used electron microscopy to characterize GABAergic synapses in the dorsal cortex, central nucleus, and lateral cortex of the IC (ICd, ICc, and IClc) of guinea pigs. Throughout the IC, GABAergic synapses are characterized by pleomorphic vesicles and symmetric junctions. Comparisons of GABAergic synapses with excitatory synapses revealed differences (in some IC subdivisions) between the distributions of these synapse types onto IC cells. For excitatory cells in the IClc and ICd GABAergic synapses are biased toward the somas and large dendrites, whereas the excitatory boutons are biased toward spines and small dendrites. This arrangement could allow for strong inhibitory gating of excitatory inputs. Such differences in synaptic distributions were not observed in the ICc, where the two classes of bouton have similar distributions along the dendrites of excitatory cells. Interactions between excitatory and GABAergic inputs on the dendrites of excitatory ICc cells may be more restricted (i.e., reflecting local dendritic processing) than in the other IC subdivisions. Comparisons across IC subdivisions revealed evidence for two classes of GABAergic boutons, a small GABAergic (SG) class that is present throughout the IC and a large GABAergic (LG) class that is almost completely restricted to the ICc. In the ICc, LG, and SG boutons differ in their targets. SG boutons contact excitatory dendritic shafts most often, but also contact excitatory spines and somas (excitatory and GABAergic). LG synapses make comparatively fewer contacts on excitatory shafts, and make comparatively more contacts on excitatory spines and on somas (excitatory and GABAergic). LG boutons likely have a lemniscal origin.

摘要

在下丘(IC)中,细胞整合来自脑干的抑制性输入以及来自脑干和听觉皮层的兴奋性输入。为了了解IC细胞如何整合这些输入,需要确定它们的突触排列。我们利用电子显微镜对豚鼠IC的背侧皮层、中央核和外侧皮层(ICd、ICc和IClc)中的GABA能突触进行了表征。在整个IC中,GABA能突触的特征是具有多形性囊泡和对称连接。将GABA能突触与兴奋性突触进行比较,发现在这些突触类型在IC细胞上的分布(在一些IC亚区)存在差异。对于IClc和ICd中的兴奋性细胞,GABA能突触偏向于胞体和大的树突,而兴奋性终扣则偏向于棘突和小的树突。这种排列可能允许对兴奋性输入进行强有力的抑制性门控。在ICc中未观察到这种突触分布的差异,在ICc中,这两类终扣沿兴奋性细胞的树突具有相似的分布。与其他IC亚区相比,兴奋性ICc细胞树突上兴奋性和GABA能输入之间的相互作用可能受到更多限制(即反映局部树突处理)。跨IC亚区的比较揭示了两类GABA能终扣的证据,一类是小GABA能(SG)终扣,存在于整个IC中,另一类是大GABA能(LG)终扣,几乎完全局限于ICc。在ICc中,LG和SG终扣的靶点不同。SG终扣最常接触兴奋性树突干,但也接触兴奋性棘突和胞体(兴奋性和GABA能)。LG突触在兴奋性树突干上的接触相对较少,而在兴奋性棘突和胞体(兴奋性和GABA能)上的接触相对较多。LG终扣可能起源于lemniscal。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a57e/4212260/4616abc03038/fnana-08-00108-g001.jpg

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