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猫斜方体外侧核中神经元及大型突触终末的超微结构

Ultrastructure of neurons and large synaptic terminals in the lateral nucleus of the trapezoid body of the cat.

作者信息

Spirou G A, Rowland K C, Berrebi A S

机构信息

Department of Otolaryngology-HNS, West Virginia University School of Medicine, Morgantown 26506-9200, USA.

出版信息

J Comp Neurol. 1998 Aug 24;398(2):257-72. doi: 10.1002/(sici)1096-9861(19980824)398:2<257::aid-cne7>3.0.co;2-#.

Abstract

Neurons of the lateral nucleus of the trapezoid body (LNTB), the most prominent periolivary nucleus of the cat superior olivary complex, form an important component of the descending auditory pathways and also innervate the medial superior olive. Cells forming the posteroventral subnucleus (pvLNTB), when investigated by light microscopy, exhibit morphological similarities with globular bushy cells of the cochlear nucleus and principal cells of the medial nucleus of the trapezoid body. These latter two cell types are integral components of brainstem circuitry mediating the early stages of sound localization. In this report, ultrastructural features of LNTB neurons are described. pvLNTB cell bodies are characterized by a round to oval shape, smooth nuclear membrane, and the relative paucity of stacks of rough endoplasmic reticulum. In addition, pvLNTB cell bodies and proximal dendrites are contacted by large synaptic terminals which contain round synaptic vesicles and form multiple asymmetric synaptic junctions. These ultrastructural characteristics are similar to those previously described for globular and principal cells and distinguish pvLNTB cells from cells of the main subnucleus. Large terminals contacting pvLNTB cells contain a specialized organelle assembly, including an adherens plaque associated by filamentous strands with a mitochondrion. We name this organelle assembly the mitochondria-associated adherens complex (MAC) and note its proximity to synaptic junctions. Because high activity rates are characteristic of large terminals in the lower auditory system, the MAC may play a specialized role in membrane stabilization at synapses which generate high rates of vesicle membrane turnover.

摘要

梯形体外侧核(LNTB)的神经元是猫上橄榄复合体中最突出的橄榄周核,它是下行听觉通路的重要组成部分,还支配内侧上橄榄核。通过光学显微镜研究时,构成后腹侧亚核(pvLNTB)的细胞在形态上与耳蜗核的球状浓密细胞以及梯形体内侧核的主细胞相似。后两种细胞类型是介导声音定位早期阶段的脑干神经回路的组成部分。在本报告中,描述了LNTB神经元的超微结构特征。pvLNTB细胞体的特征是呈圆形至椭圆形,核膜光滑,粗面内质网堆叠相对较少。此外,pvLNTB细胞体和近端树突与大型突触终末接触,这些突触终末含有圆形突触小泡并形成多个不对称突触连接。这些超微结构特征与先前描述的球状细胞和主细胞的特征相似,并且将pvLNTB细胞与主要亚核的细胞区分开来。与pvLNTB细胞接触的大型终末含有一种特殊的细胞器组合,包括一个通过丝状链与线粒体相连的黏着斑。我们将这种细胞器组合命名为线粒体相关黏着复合体(MAC),并注意到它靠近突触连接。由于高活动率是听觉系统下部大型终末的特征,MAC可能在产生高频率囊泡膜周转的突触的膜稳定中发挥特殊作用。

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