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睫状神经节神经元上与神经细胞黏附分子相关的多唾液酸受多唾液酸转移酶水平以及与肌肉相互作用的调控。

NCAM-associated polysialic acid on ciliary ganglion neurons is regulated by polysialytransferase levels and interaction with muscle.

作者信息

Brusés J L, Oka S, Rutishauser U

机构信息

Department of Genetics, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

J Neurosci. 1995 Dec;15(12):8310-9. doi: 10.1523/JNEUROSCI.15-12-08310.1995.

Abstract

NCAM in its high polysialic acid (PSA) form is expressed on chick hindlimb motoneurons during their growth, and then decreases at about the time that synaptogenesis is completed. In order to characterize this regulation at the cell and molecular level, the present studies use the chick ciliary ganglion (CG) system, which constitutes a homogeneous and developmentally synchronized population of motoneurons that can be used for in vitro studies. Levels of PSA in the CG were evaluated both by SDS-PAGE immunoblot analysis of total NCAM and by pulse radiolabeling of newly synthesized NCAM. Up- and downregulation of PSA expression on newly synthesized NCAM in the CG was found to be closely correlated with in vivo innervation and synaptogenesis, respectively. Moreover, the downregulation observed at synaptogenesis was prevented by in vivo blockade of neuromuscular activity with alpha-bungarotoxin. The developmental regulation of PSA expression was found to coincide precisely with an increase and decrease in levels of specific polysialyltransferase activity. By contrast, the expression of the VASE exon in NCAM, which in CNS is temporally correlated with PSA downregulation, was not expressed in the CG. Cocultures of CG neurons with myotubes were used to provide direct evidence that neuron-muscle interaction can cause a specific downregulation of both neuronal PSA and polysialyltransferase activity.

摘要

多唾液酸(PSA)形式的神经细胞黏附分子(NCAM)在鸡后肢运动神经元生长期间表达,然后在突触发生完成时下降。为了在细胞和分子水平上表征这种调节,本研究使用鸡睫状神经节(CG)系统,该系统由运动神经元的同质且发育同步的群体组成,可用于体外研究。通过对总NCAM的SDS-PAGE免疫印迹分析和对新合成的NCAM进行脉冲放射性标记来评估CG中PSA的水平。发现CG中新合成的NCAM上PSA表达的上调和下调分别与体内神经支配和突触发生密切相关。此外,用α-银环蛇毒素体内阻断神经肌肉活动可防止突触发生时观察到的下调。发现PSA表达的发育调节与特定多唾液酸转移酶活性水平的增加和减少精确一致。相比之下,NCAM中VASE外显子的表达在CG中未表达,在中枢神经系统中该外显子的表达与PSA下调在时间上相关。使用CG神经元与肌管的共培养来提供直接证据,证明神经元 - 肌肉相互作用可导致神经元PSA和多唾液酸转移酶活性的特异性下调。

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