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多唾液酸神经细胞黏附分子在脑可塑性中的作用:从突触到新神经元的整合

Polysialic acid-neural cell adhesion molecule in brain plasticity: from synapses to integration of new neurons.

作者信息

Gascon Eduardo, Vutskits Laszlo, Kiss Jozsef Zoltan

机构信息

Department of Neuroscience, University of Geneva Medical School, 1, Rue Michel Servet, CH-1211, Geneva, Switzerland.

出版信息

Brain Res Rev. 2007 Nov;56(1):101-18. doi: 10.1016/j.brainresrev.2007.05.014. Epub 2007 Jul 4.

Abstract

Isoforms of the neuronal cell adhesion molecule (NCAM) carrying the linear homopolymer of alpha 2,8-linked sialic acid (polysialic acid, PSA) have emerged as particularly attractive candidates for promoting plasticity in the nervous system. The large negatively charged PSA chain of NCAM is postulated to be a spacer that reduces adhesion forces between cells allowing dynamic changes in membrane contacts. Accumulating evidence also suggests that PSA-NCAM-mediated interactions lead to activation of intracellular signaling cascades that are fundamental to the biological functions of the molecule. An important role of PSA-NCAM appears to be during development, when its expression level is high and where it contributes to the regulation of cell shape, growth or migration. However, PSA-NCAM does persist in adult brain structures such as the hippocampus that display a high degree of plasticity where it is involved in activity-induced synaptic plasticity. Recent advances in the field of PSA-NCAM research have not only consolidated the importance of this molecule in plasticity processes but also suggest a role for PSA-NCAM in the regulation of higher cognitive functions and psychiatric disorders. In this review, we discuss the role and mode of actions of PSA-NCAM in structural plasticity as well as its potential link to cognitive processes.

摘要

携带α2,8连接唾液酸线性同聚物(多唾液酸,PSA)的神经细胞粘附分子(NCAM)异构体已成为促进神经系统可塑性的特别有吸引力的候选者。NCAM带大量负电荷的PSA链被认为是一种间隔物,可降低细胞间的粘附力,使膜接触发生动态变化。越来越多的证据还表明,PSA-NCAM介导的相互作用会导致细胞内信号级联反应的激活,而这是该分子生物学功能的基础。PSA-NCAM的一个重要作用似乎出现在发育过程中,此时其表达水平较高,并且它有助于调节细胞形状、生长或迁移。然而,PSA-NCAM确实存在于成年大脑结构中,如海马体,海马体具有高度可塑性,PSA-NCAM参与其中的活动诱导突触可塑性。PSA-NCAM研究领域的最新进展不仅巩固了该分子在可塑性过程中的重要性,还表明PSA-NCAM在调节高级认知功能和精神疾病中发挥作用。在这篇综述中,我们讨论了PSA-NCAM在结构可塑性中的作用和作用方式,以及它与认知过程的潜在联系。

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