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大鼠海马切片中CA3→CA1轴突的三维结构与组成:对突触前连接和分隔的影响

Three-dimensional structure and composition of CA3-->CA1 axons in rat hippocampal slices: implications for presynaptic connectivity and compartmentalization.

作者信息

Shepherd G M, Harris K M

机构信息

Department of Neurology, Massachusetts General Hospital, Boston, Massachusetts 02114, USA.

出版信息

J Neurosci. 1998 Oct 15;18(20):8300-10. doi: 10.1523/JNEUROSCI.18-20-08300.1998.

Abstract

Physiological studies of CA3-->CA1 synaptic transmission and plasticity have revealed both pre- and postsynaptic effects. Understanding the extent to which individual presynaptic axonal boutons could provide local compartments for control of synaptic efficacy and microconnectivity requires knowledge of their three-dimensional morphology and composition. In hippocampal slices, serial electron microscopy was used to examine a nearly homogeneous population of CA3-->CA1 axons in the middle of stratum radiatum of area CA1. The locations of postsynaptic densities (PSDs), vesicles, and mitochondria were determined along 75 axon segments (9.1 +/- 2.0 micrometer in length). Synapses, defined by the colocalization of PSDs and vesicles, occurred on average at 2.7 micrometer intervals along the axons. Most varicosities (68%) had one PSD, 19% had 2-4 PSDs, and 13% had none. Synaptic vesicles occurred in 90% of the varicosities. One-half (53%) of the varicosities lacked mitochondria, raising questions about their regulation of ATP and Ca2+, and 8% of varicosities contained only mitochondria. Eleven axons were reconstructed fully. The varicosities were oblong and varied greatly in both length (1.1 +/- 0.7 micrometer) and volume (0.13 +/- 0.14 micrometer 3), whereas the intervaricosity shafts were narrow, tubular, and similar in diameter (0.17 +/- 0.04 micrometer) but variable in length (1.4 +/- 1.2 micrometer). The narrow axonal shafts resemble dendritic spine necks and thus could promote biochemical compartmentalization of individual axonal varicosities. The findings raise the intriguing possibility of localized differences in metabolism and connectivity among different axons, varicosities, and synapses.

摘要

对CA3→CA1突触传递和可塑性的生理学研究揭示了突触前和突触后的效应。要了解单个突触前轴突终扣在多大程度上能够为控制突触效能和微连接性提供局部区域,就需要了解它们的三维形态和组成。在海马切片中,使用连续电子显微镜检查CA1区辐射层中部几乎同质的CA3→CA1轴突群体。沿着75个轴突节段(长度为9.1±2.0微米)确定了突触后致密物(PSD)、囊泡和线粒体的位置。由PSD和囊泡共定位定义的突触平均沿轴突以2.7微米的间隔出现。大多数曲张体(68%)有一个PSD,19%有2 - 4个PSD,13%没有。90%的曲张体中有突触囊泡。一半(53%)的曲张体没有线粒体,这引发了关于其对ATP和Ca2+调节的问题,8%的曲张体仅含有线粒体。对11条轴突进行了完整重建。曲张体呈椭圆形,长度(1.1±0.7微米)和体积(0.13±0.14立方微米)差异很大,而曲张体间的轴突干狭窄、呈管状,直径相似(0.17±0.04微米)但长度可变(1.4±1.2微米)。狭窄的轴突干类似于树突棘颈部,因此可能促进单个轴突曲张体的生化区室化。这些发现提出了一个有趣的可能性,即不同轴突、曲张体和突触之间在代谢和连接性上存在局部差异。

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