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THE ALTERED EXPRESSION OF PERINEURONAL NET ELEMENTS DURING NEURAL DIFFERENTIATION

机译:神经分化过程中神经元网元的改变表达

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Background: Perineuronal nets (PNNs), which are localized around neurons during development, are specialized forms of neural extracellular matrix with neuroprotective and plasticity-regulating roles. Hyaluronan and proteoglycan link protein 1 (HAPLN1), tenascin-R (TNR) and aggrecan (ACAN) are key elements of PNNs. In diseases characterized by neuritogenesis defects, the expression of these proteins is known to be downregulated, suggesting that PNNs may have a role in neural differentiation. Methods: In this study, the mRNA and protein levels of HAPLN1, TNR and ACAN were determined and compared at specific time points of neural differentiation. We used PC12 cells as the in vitro model because they reflect this developmental process. Results: On day 7, the HAPLN1 mRNA level showed a 2.9-fold increase compared to the non-differentiated state. However, the cellular HAPLN1 protein level showed a decrease, indicating that the protein may have roles in neural differentiation, and may be secreted during the early period of differentiation. By contrast, TNR mRNA and protein levels remained unchanged, and the amount of cellular ACAN protein showed a 3.7-fold increase at day 7. These results suggest that ACAN may be secreted after day 7, possibly due to its large amount of post-translational modifications. Conclusions: Our results provide preliminary data on the expression of PNN elements during neural differentiation. Further investigations will be performed on the role of these elements in neurological disease models.
机译:背景:神经周围神经网络(PNN)在发育过程中位于神经元周围,是神经细胞外基质的特殊形式,具有神经保护和可塑性调节作用。透明质酸和蛋白聚糖连接蛋白1(HAPLN1),腱糖蛋白R(TNR)和聚集蛋白聚糖(ACAN)是PNN的关键元素。在以神经发生缺陷为特征的疾病中,已知这些蛋白的表达被下调,这表明PNN可能在神经分化中起作用。方法:在这项研究中,测定了HAPLN1,TNR和ACAN的mRNA和蛋白水平,并在神经分化的特定时间点进行了比较。我们将PC12细胞用作体外模型,因为它们反映了这一发育过程。结果:在第7天,与未分化状态相比,HAPLN1 mRNA水平增加了2.9倍。但是,细胞中的HAPLN1蛋白水平下降,表明该蛋白可能在神经分化中起作用,并且可能在分化的早期分泌出来。相比之下,TNR mRNA和蛋白质水平保持不变,并且细胞ACAN蛋白质的量在第7天增加了3.7倍。这些结果表明,ACAN可能在第7天后被分泌,这可能是由于其大量的翻译后修改。结论:我们的结果提供了神经分化过程中PNN元素表达的初步数据。将对这些元素在神经系统疾病模型中的作用进行进一步研究。

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