Jungnickel Julia, Brämer Christian, Bronzlik Paul, Lipokatic-Takacs Esther, Weinhold Birgit, Gerardy-Schahn Rita, Grothe Claudia
Hannover Medical School, Institute of Neuroanatomy, Germany.
Mol Cell Neurosci. 2009 Mar;40(3):374-81. doi: 10.1016/j.mcn.2008.12.003. Epub 2008 Dec 24.
PolySia, the most striking post-translational modification of the neural cell adhesion molecule, is down-regulated during postnatal development. After peripheral nerve lesion, polySia is located on neuronal and glial cells normally not synthesizing polySia. However, structural consequences of reduced polySia content for peripheral nerve regeneration have not yet been clear. Furthermore, the contribution of sialyltransferases ST8SiaII and ST8SiaIV for the up-regulation of polySia has not been studied so far. In order to investigate the impact of polySia on regeneration processes of myelinated axons, we examined mouse mutants retaining only one functional sialyltransferase allele. In the absence of ST8SiaII, quantification of myelinated axons revealed a significant decrease in number and size of regenerated fibers without impairment of remyelination. In contrast, St8SiaIV deficiency resulted in increased fiber outgrowth and axonal maturation. Western blot analysis demonstrated that both ST8SiaII and St8SiaIV direct up-regulation of polySia. Cell-specific induction of polySia in myelinating Schwann cells and on regenerated axons in the presence of ST8SiaIV, but not ST8SiaII, indicates that not only the amount of polySia but also its cellular localization has a high impact on the regeneration progress of peripheral nerves.
多唾液酸(PolySia)是神经细胞黏附分子最显著的翻译后修饰,在出生后发育过程中表达下调。外周神经损伤后,多唾液酸位于通常不合成多唾液酸的神经元和神经胶质细胞上。然而,多唾液酸含量降低对周围神经再生的结构影响尚不清楚。此外,唾液酸转移酶ST8SiaII和ST8SiaIV对多唾液酸上调的作用目前尚未得到研究。为了研究多唾液酸对有髓轴突再生过程的影响,我们检测了仅保留一个功能性唾液酸转移酶等位基因的小鼠突变体。在缺乏ST8SiaII的情况下,对有髓轴突的定量分析显示,再生纤维的数量和大小显著减少,但髓鞘再生未受影响。相反,St8SiaIV缺陷导致纤维生长增加和轴突成熟。蛋白质免疫印迹分析表明,ST8SiaII和St8SiaIV均可直接上调多唾液酸。在存在ST8SiaIV而非ST8SiaII的情况下,在髓鞘形成的施万细胞和再生轴突上细胞特异性诱导多唾液酸,这表明不仅多唾液酸的量,而且其细胞定位对周围神经的再生进程都有很大影响。