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Homeostatic regulation of NCAM polysialylation is critical for correct synaptic targeting

机译:NCAM聚唾液酸化的稳态调节对于正确的突触靶向至关重要

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During development, axonal projections have a remarkable ability to innervate correct dendritic subcompartments of their target neurons and to form regular neuronal circuits. Altered axonal targeting with formation of synapses on inappropriate neurons may result in neurodevelopmental sequelae, leading to psychiatric disorders. Here we show that altering the expression level of the polysialic acid moiety, which is a developmentally regulated, posttranslational modification of the neural cell adhesionmolecule NCAM, critically affects correct circuit formation. Using a chemically modified sialic acid precursor (N-propyl-D-mannosamine), we inhibited the polysialyltransferase ST8SiaII, the principal enzyme involved in polysialylation during development, at selected developmental time-points. This treatment altered NCAM polysialylation while NCAM expression was not affected. Altered polysialylation resulted in an aberrant mossy fiber projection that formed glutamatergic terminals on pyramidal neurons of the CA1 region in organotypic slice cultures and in vivo.Electrophysiological recordings revealed that the ectopic terminals on CA1 pyramids were functional and displayed characteristics of mossy fiber synapses. Moreover, ultrastructural examination indicated a "mossy fiber synapse"-like morphology.We thus conclude that homeostatic regulation of the amount of synthesized polysialic acid at specific developmental stages is essential for correct synaptic targeting and circuit formation during hippocampal development.
机译:在发育过程中,轴突投射具有显着的能力,可以支配其目标神经元的正确树突状小室并形成规则的神经元回路。轴突靶向性改变,在不适当的神经元上形成突触,可能导致神经发育后遗症,导致精神疾病。在这里,我们显示改变多唾液酸部分的表达水平,这是神经细胞粘附分子NCAM的发育调控,翻译后修饰,严重影响正确的电路形成。使用化学修饰的唾液酸前体(N-丙基-D-甘露糖胺),我们在选定的开发时间点抑制了聚唾液酸转移酶ST8SiaII,它是发育过程中参与聚唾液酸化的主要酶。该处理改变了NCAM多唾液酸化,而NCAM表达不受影响。改变的聚唾液酸化作用导致苔藓纤维异常投射,在器官型切片培养和体内CA1区域的锥体神经元上形成了谷氨酸能末端。电生理记录显示,CA1金字塔上的异位末端是功能性的,并显示出苔藓纤维突触的特征。此外,超微结构检查显示出“苔藓纤维突触”样的形态。因此,我们得出结论,在特定发育阶段对合成的唾液酸的量进行稳态调节对于海马发育过程中正确的突触定位和回路形成至关重要。

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