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首页> 外文期刊>Journal of cellular and molecular medicine. >ARG3.1/ARC expression in hippocampal dentate gyrus astrocytes: ultrastructural evidence and co-localization with glial fibrillary acidic protein.
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ARG3.1/ARC expression in hippocampal dentate gyrus astrocytes: ultrastructural evidence and co-localization with glial fibrillary acidic protein.

机译:ARG3.1 / ARC在海马齿状回星形胶质细胞中的表达:超微结构证据和与胶质纤维酸性蛋白共定位。

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Synaptic efficacy following long-term potentiation (LTP) and memory consolidation is associated with changes in the expression of immediate early genes (IEGs). These changes are often accompanied by increased expression of glial fibrillary acidic protein (GFAP). While the protein products of the majority of IEGs are mainly restricted to the cell body, Arg3.1/Arc product is rapidly delivered to dendrites, where it accumulates close to synaptic sites. Arg3.1/Arc protein was originally considered neurone specific; however, we have recently found Arg3.1/Arc immunoreactivity (Arg3.1/Arc-IR) within glial cells and demonstrated its increased expression after LTP in the hippocampal dentate gyrus (DG). Here, we have further investigated this novel finding, using electron microscopic immunocytochemistry to determine the localization and sub-cellular distribution of Arg3.1/Arc protein in GFAP positive glia (GFAP-IR) in the DG. Arg3.1/Arc labelling was seen prominently in GFAP-IR glial cell bodies and in large- and medium-sized glial filamentous processes. GFAP-labelled medium-small peri-synaptic glial profiles also displayed Arg3.1/Arc-IR; however, the very thin and distal glial filaments only displayed Arc-IR. Arc-IR was distributed throughout the cytoplasm, often associated with GFAP filaments, and along the plasma membrane of glial processes. Peri-synaptic glial Arg3.1/Arc-IR processes were apposed to pre- and/or post-synaptic profiles at asymmetric axospinous synapses. These data, taken with our earlier study which provided evidence for an increase in astrocytic Arg3.1/Arc-IR after the induction of LTP, suggest a role for glial Arg3.1/Arc in structural and synaptic plasticity which may be critical for the maintenance of cognitive functions.
机译:长期增强(LTP)和记忆巩固后的突触效力与即刻早期基因(IEG)表达的变化有关。这些改变通常伴随着神经胶质纤维酸性蛋白(GFAP)表达的增加。虽然大多数IEG的蛋白质产物主要局限于细胞体,但Arg3.1 / Arc产物却迅速递送到树突中,在树突中聚集在突触部位附近。 Arg3.1 / Arc蛋白最初被认为是神经元特异性的。然而,我们最近在神经胶质细胞中发现了Arg3.1 / Arc免疫反应性(Arg3.1 / Arc-IR),并证明了LTP后海马齿状回(DG)中其表达增加。在这里,我们进一步研究了这一新发现,使用电子显微镜免疫细胞化学确定了DGAP阳性胶质细胞(GFAP-IR)中Arg3.1 / Arc蛋白的定位和亚细胞分布。在GFAP-1R神经胶质细胞体以及大中型神经胶质丝状过程中,Arg3.1 / Arc标记显着。 GFAP标记的中小突触周围神经胶质分布也显示Arg3.1 / Arc-IR。然而,非常细的和远端的神经胶质细丝仅显示出弧光红外。 Arc-IR分布在通常与GFAP细丝相关的整个细胞质中,并沿神经胶质细胞质膜分布。突触周围神经胶质Arg3.1 / Arc-IR过程在不对称的轴突突突处与突触前和/或突触后轮廓相关。这些数据与我们较早的研究一起提供,为LTP诱导后星形细胞Arg3.1 / Arc-IR的增加提供了证据,表明神经胶质Arg3.1 / Arc在结构和突触可塑性中的作用,这可能对神经胶质至关重要。维持认知功能。

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