首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Mice deficient in the polysialyltransferase ST8SiaIV/PST-1 allow discrimination of the roles of neural cell adhesion molecule protein and polysialic acid in neural development and synaptic plasticity.
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Mice deficient in the polysialyltransferase ST8SiaIV/PST-1 allow discrimination of the roles of neural cell adhesion molecule protein and polysialic acid in neural development and synaptic plasticity.

机译:缺乏聚唾液酸转移酶ST8SiaIV / PST-1的小鼠可以区分神经细胞粘附分子蛋白和聚唾液酸在神经发育和突触可塑性中的作用。

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摘要

Functional properties of the neural cell adhesion molecule (NCAM) are strongly influenced by polysialylation. We used gene-targeting to generate mice lacking ST8SiaIV/PST-1, one of the polysialyltransferases responsible for addition of polysialic acid (PSA) to NCAM. Mice homozygous for the null mutation reveal normal development of gross anatomical features. In contrast to NCAM-deficient mice, olfactory precursor cells in the rostral migratory stream express PSA and follow their normal pathway. Furthermore, delamination of mossy fibers in the hippocampal CA3 region, as found in NCAM-deficient mice, does not occur in ST8SiaIV mutants. However, during postnatal development these animals show a decrease of PSA in most brain regions compared to wild-type animals. Loss of PSA in the presence of NCAM protein but in the absence of obvious histological changes allowed us to directly address the role of PSA in synaptic plasticity. Schaffer collateral-CA1 synapses, which express PSA in wild types, showed impaired long-term potentiation (LTP) and long-term depression (LTD) in adult mutants. This impairment was age-dependent, following the time course of developmental disappearance of PSA. Contrary to NCAM mutant mice, LTP in ST8SiaIV mutants was undisturbed at mossy fiber-CA3 synapses, which do not express PSA in wild-type mice. The results demonstrate an essential role for ST8SiaIV in synaptic plasticity in hippocampal CA1 synapses, whereas PSA produced by different polysialyltransferase or polysialyltransferases at early stages of differentiation regulates migration of neural precursor cells and correct lamination of mossy fibers. We suggest that NCAM but not PSA is likely to be important for LTP in the hippocampal CA3 region.
机译:神经细胞粘附分子(NCAM)的功能特性受到聚唾液酸化作用的强烈影响。我们使用基因靶向来产生缺乏ST8SiaIV / PST-1的小鼠,ST8SiaIV / PST-1是负责向NCAM中添加多唾液酸(PSA)的多唾液酸转移酶之一。无效突变纯合的小鼠揭示了总体解剖特征的正常发育。与缺乏NCAM的小鼠相反,在鼻迁移流中的嗅觉前体细胞表达PSA并遵循其正常途径。此外,在NCAM缺陷型小鼠中发现的海马CA3区苔藓纤维的分层在ST8SiaIV突变体中不会发生。但是,与野生型动物相比,这些动物在产后发育过程中大部分大脑区域的PSA降低。 NCAM蛋白存在下PSA的丧失,但在没有明显的组织学改变的情况下,我们可以直接解决PSA在突触可塑性中的作用。在野生型中表达PSA的Schaffer侧支CA1突触在成年突变体中显示出长期增强(LTP)和长期抑制(LTD)受损。在PSA发育消失的时间过程中,这种损害取决于年龄。与NCAM突变小鼠相反,ST8SiaIV突变体中的LTP在长满苔藓的纤维-CA3突触中不受干扰,而突触在野生型小鼠中不表达PSA。结果表明,ST8SiaIV在海马CA1突触的突触可塑性中起着至关重要的作用,而在分化的早期阶段,由不同的聚唾液酸转移酶或聚唾液酸转移酶产生的PSA调节神经前体细胞的迁移和苔藓纤维的正确层压。我们建议NCAM而非PSA对海马CA3区的LTP可能很重要。

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