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首页> 外文期刊>The Journal of Comparative Neurology >Postnatal development of perineuronal nets in wild-type mice and in a mutant deficient in tenascin-R.
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Postnatal development of perineuronal nets in wild-type mice and in a mutant deficient in tenascin-R.

机译:野生型小鼠和肌腱蛋白-R缺陷型突变体中神经周围神经网的产后发育。

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摘要

The extracellular matrix glycoprotein tenascin-R (TN-R), colocalizing with hyaluronan, phosphacan, and aggregating chondroitin sulphate proteoglycans in the white and grey matter, is accumulated in perineuronal nets that surround different types of neurons in many brain regions. To characterize the role of TN-R in the formation of perineuronal nets, we studied their postnatal development in wild-type mice and in a TN-R knock-out mutant by using the lectin Wisteria floribunda agglutinin and an antibody to nonspecified chondroitin sulphate proteoglycans as established cytochemical markers. We detected the matrix components TN-R, hyaluronan, phosphacan, neurocan, and brevican in the perineuronal nets of cortical and subcortical regions. In wild-type mice, lectin-stained, immature perineuronal nets were first seen on postnatal day 4 in the brainstem and on day 14 in the cerebral cortex. The staining intensity of these nets for TN-R, hyaluronan, phosphacan, neurocan, and brevican was extremely weak or not distinguishable from that of the surrounding neuropil. However, all markers showed an increase in staining intensity of perineuronal nets reaching maximal levels between postnatal days 21 and 40. In TN-R-deficient animals, the perineuronal nets tended to show a granular component within their lattice-like structure at early stages of development. Additionally, the staining intensity in perineuronal nets was reduced for brevican, extremely low for hyaluronan and neurocan, and virtually no immunoreactivity was detectable for phosphacan. The granular configuration of perineuronal nets became more predominant with advancing age of the mutant animals, indicating the continued abnormal aggregation of chondroitin sulphate proteoglycans complexed with hyaluronan. As shown by electron microscopy in the cerebral cortex, the disruption of perineuronal nets was not accompanied by apparent changes in the synaptic structure on net-bearing neurons. The regional distribution patterns and the temporal course of development of perineuronal nets were not obviously changed in the mutant. We conclude that the lack of TN-R initially and continuously disturbs the molecular scaffolding of extracellular matrix components in perineuronal nets. This may interfere with the development of the specific micromilieu of the ensheathed neurons and adjacent glial cells and may also permanently change their functional properties. Copyright 2000 Wiley-Liss, Inc.
机译:细胞外基质糖蛋白腱糖蛋白-R(TN-R)与透明质酸,磷酸酯共定位,并聚集了白色和灰色物质中的硫酸软骨素蛋白聚糖,聚集在围绕许多大脑区域不同类型神经元的神经周围网中。为了表征TN-R在神经周围神经网络形成中的作用,我们使用凝集素紫藤凝集素和针对非特定硫酸软骨素蛋白多糖的抗体,研究了它们在野生型小鼠和TN-R敲除突变体中的出生后发育。作为已建立的细胞化学标记物。我们在皮层和皮层下区域的神经周围网中检测到基质成分TN-R,透明质酸,磷酰胺,神经酰胺和brevican。在野生型小鼠中,在出生后第4天在脑干中和第14天在大脑皮层中首次见到凝集素染色的未成熟神经周围神经网。这些网对TN-R,乙酰透明质酸,磷酰胺,神经酰胺和布雷维康的染色强度极弱,或者与周围神经纤维没有区别。但是,所有标记物均显示出产后第21天到第40天之间,神经周围神经网的染色强度增加,达到最高水平。在TN-R缺乏的动物中,神经周围神经网倾向于在其早期阶段的格子状结构中显示出颗粒状成分。发展。另外,对于brevican,减少了神经周神经网络中的染色强度,对于透明质酸和神经cann,其染色强度极低,并且对于phosphacan实际上几乎没有检测到免疫反应性。随着突变动物年龄的增长,神经周围神经网络的颗粒状结构变得更为主要,这表明与透明质酸复合的硫酸软骨素蛋白聚糖的持续异常聚集。如大脑皮层中的电子显微镜所示,围神经元神经网络的破坏并没有伴随着网状神经元突触结构的明显变化。突变体中神经周围神经网络的区域分布方式和发展的时间进程没有明显改变。我们得出的结论是,缺乏TN-R会持续干扰神经周围神经网络中细胞外基质成分的分子支架。这可能会干扰所包被的神经元和邻近神经胶质细胞的特定微环境的发展,也可能永久改变其功能特性。版权所有2000 Wiley-Liss,Inc.

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