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α-中间丝蛋白和神经丝三联体蛋白在培养海马神经元中的区室化。

Compartmentation of alpha-internexin and neurofilament triplet proteins in cultured hippocampal neurons.

作者信息

Benson D L, Mandell J W, Shaw G, Banker G

机构信息

Fishberg Research Center for Neurobiology, Mount Sinai School of Medicine, New York, NY 10029, USA.

出版信息

J Neurocytol. 1996 Mar;25(3):181-96. doi: 10.1007/BF02284795.

Abstract

Intermediate filaments comprise an integral part of the neuronal cytoskeleton. However, little is known about their function, and there remains some uncertainty about their precise subcellular localization. We examined the timing of expression and distribution of alpha-internexin, neurofilament triplet proteins and peripherin using immunocytochemistry in cultured hippocampal neurons. alpha-Internexin immunostaining was present in all neurons at all developmental stages. Immunostaining appeared as long filaments in axons and short fragments in dendrites which extended into dendritic spines. The presence of alpha-internexin in dendritic spines was confirmed in situ by electron microscopy of rat hippocampal tissue sections and suggests that this intermediate filament may serve as a link between cytoskeletal elements in dendritic shafts and spines. In culture, immunostaining using antibodies against individual triplet protein subunits indicated that light (NF-L) and middle (NF-M) subunits were first expressed in cells shortly after the initiation of axonal outgrowth. Expression of the heavy (NF-H) subunit occurred a few days later. Although timing and localization of expression did not correlate with the initiation of axonal or dendritic processes, it was coincident with periods of rapid outgrowth. Triplet proteins were more abundant in axons and appeared to be incorporated into lengthier filaments than in dendrites. Highly phosphorylated NFH/M immunoreactivity was polarized to axons after 6 days in culture. The distribution of one NF-H epitope was restricted to GABAergic neurons in mature cultures, suggesting a cell-type specific modification. Peripherin was not detectable at any time in hippocampal cultures. Our results show that intermediate filaments are integral components of the neuronal cytoskeleton of cultured hippocampal neurons throughout development. Furthermore, the localization of alpha-internexin suggests that it may be involved in the formation or maintenance of dendritic spines.

摘要

中间丝是神经元细胞骨架的一个组成部分。然而,人们对其功能知之甚少,其精确的亚细胞定位仍存在一些不确定性。我们利用免疫细胞化学技术研究了培养的海马神经元中α-中间丝蛋白、神经丝三联体蛋白和外周蛋白的表达时间和分布情况。α-中间丝蛋白免疫染色在所有发育阶段的所有神经元中均有出现。免疫染色在轴突中表现为长丝,在树突中表现为短片段,并延伸至树突棘。通过对大鼠海马组织切片进行电子显微镜观察,原位证实了α-中间丝蛋白在树突棘中的存在,这表明这种中间丝可能作为树突轴和树突棘中细胞骨架成分之间的连接物。在培养过程中,使用针对单个三联体蛋白亚基的抗体进行免疫染色表明,轻链(NF-L)和中链(NF-M)亚基在轴突生长开始后不久就在细胞中首次表达。重链(NF-H)亚基的表达在几天后出现。虽然表达的时间和定位与轴突或树突的起始过程无关,但与快速生长阶段一致。三联体蛋白在轴突中更为丰富,并且似乎比在树突中整合成长度更长的丝。培养6天后,高度磷酸化的NFH/M免疫反应性在轴突中呈极化分布。在成熟培养物中,一种NF-H表位的分布仅限于γ-氨基丁酸能神经元,这表明存在细胞类型特异性修饰。在海马培养物中,任何时候都检测不到外周蛋白。我们的结果表明,在整个发育过程中,中间丝是培养的海马神经元细胞骨架的组成成分。此外,α-中间丝蛋白的定位表明它可能参与树突棘的形成或维持。

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