Cell Biology Department, Universitat de València, Burjassot, Spain.
Neuroscience. 2010 May 19;167(3):825-37. doi: 10.1016/j.neuroscience.2010.02.067. Epub 2010 Mar 3.
Polysialic acid (PSA) is a negatively charged carbohydrate polymer, which confers antiadhesive properties to the neural cell adhesion molecule NCAM and facilitates cellular plasticity during brain development. In mice, PSA expression decreases drastically during the first postnatal weeks and it gets confined to immature neurons and regions displaying structural plasticity during adulthood. In the brain, PSA is exclusively synthesized by the two polysialyltransferases ST8SiaII and ST8SiaIV. To study their individual contribution to polysialylation in the adult, we analyzed PSA expression in mice deficient for either polysialyltransferase. Focusing on the cerebral cortex, our results indicate that ST8SiaIV is solely responsible for PSA expression in mature interneurons and in most regions of cortical neuropil. By contrast, ST8SiaII is the major polysialyltransferase in immature neurons of the paleocortex layer II and the hippocampal subgranular zone. The numbers of cells expressing PSA or doublecortin, another marker of immature neurons, were increased in the paleocortex layer II of ST8SiaIV-deficient mice, indicating altered differentiation of these cells. Analysis of doublecortin expression also indicated that the production of new granule neurons in the subgranular zone of ST8SiaII-deficient mice is not affected. However, many of the immature granule neurons showed aberrant locations and morphology, suggesting a role of ST8SiaII in their terminal differentiation.
聚唾液酸(PSA)是一种带负电荷的碳水化合物聚合物,它使神经细胞黏附分子 NCAM 具有抗黏附特性,并促进大脑发育过程中的细胞可塑性。在小鼠中,PSA 的表达在出生后的第一周内急剧下降,并且局限于未成熟神经元和成年期表现出结构可塑性的区域。在大脑中,PSA 仅由两种多唾液酸转移酶 ST8SiaII 和 ST8SiaIV 合成。为了研究它们在成年期对多唾液酸化的各自贡献,我们分析了缺乏任一多唾液酸转移酶的小鼠中的 PSA 表达。我们专注于大脑皮层,结果表明 ST8SiaIV 仅负责成熟中间神经元和皮质神经胶大部分区域的 PSA 表达。相比之下,ST8SiaII 是古皮层 II 层和海马下颗粒区未成熟神经元中的主要多唾液酸转移酶。在 ST8SiaIV 缺陷型小鼠的古皮层 II 层中,表达 PSA 或另一种未成熟神经元标志物双皮质蛋白的细胞数量增加,表明这些细胞的分化发生改变。双皮质蛋白表达的分析也表明,ST8SiaII 缺陷型小鼠下颗粒区中新颗粒神经元的产生不受影响。然而,许多未成熟的颗粒神经元表现出异常的位置和形态,表明 ST8SiaII 在它们的终末分化中起作用。