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轴突起始段突触足蛋白的结构可塑性在视觉皮层发育过程中。

Structural Plasticity of Synaptopodin in the Axon Initial Segment during Visual Cortex Development.

机构信息

Institute of Neuroanatomy, Centre for Biomedicine and Medical Technology Mannheim (CBTM), Medical Faculty Mannheim, Heidelberg University, Ludolf-Krehl-Str. 13-17, 68167 Mannheim, Germany.

Department of Neurobiology, Heidelberg University, Im Neuenheimer Feld 364, 69120 Heidelberg, Germany.

出版信息

Cereb Cortex. 2017 Sep 1;27(9):4662-4675. doi: 10.1093/cercor/bhx208.

Abstract

The axon initial segment (AIS) is essential for action potential generation. Recently, the AIS was identified as a site of neuronal plasticity. A subpopulation of AIS in cortical principal neurons contains stacks of endoplasmic reticulum (ER) forming the cisternal organelle (CO). The function of this organelle is poorly understood, but roles in local Ca2+-trafficking and AIS plasticity are discussed. To investigate whether the presence and/or the size of COs are linked to the development and maturation of AIS of cortical neurons, we analyzed the relationship between COs and the AIS during visual cortex development under control and visual deprivation conditions. In wildtype mice, immunolabeling for synaptopodin, ankyrin-G, and ßIV-spectrin were employed to label COs and the AIS, respectively. Dark rearing resulted in an increase in synaptopodin cluster sizes, suggesting a homeostatic function of the CO in this cellular compartment. In line with this observation, synaptopodin-deficient mice lacking the CO showed AIS shortening in the dark. Collectively, these data demonstrate that the CO is an essential part of the AIS machinery required for AIS plasticity during a critical developmental period of the visual cortex.

摘要

轴突起始段 (AIS) 是产生动作电位的关键。最近,AIS 被确定为神经元可塑性的一个部位。皮质主要神经元中的 AIS 亚群包含形成内质网 (ER) 堆叠的 cisternal 细胞器 (CO)。该细胞器的功能知之甚少,但讨论了其在局部 Ca2+转运和 AIS 可塑性中的作用。为了研究 CO 的存在和/或大小是否与皮质神经元 AIS 的发育和成熟有关,我们在对照和视觉剥夺条件下分析了视觉皮层发育过程中 CO 与 AIS 之间的关系。在野生型小鼠中,使用突触蛋白聚糖、锚蛋白 G 和 ßIV- spectrin 的免疫标记分别标记 CO 和 AIS。暗适应导致突触蛋白聚糖簇大小增加,表明 CO 在该细胞区室中具有同源功能。与这一观察结果一致,缺乏 CO 的突触蛋白聚糖缺陷型小鼠在暗适应中表现出 AIS 缩短。总之,这些数据表明,CO 是 AIS 可塑性所必需的 AIS 机械装置的重要组成部分,这在视觉皮层的关键发育时期是必需的。

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