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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Structural and functional alterations of neuromuscular junctions in NCAM-deficient mice.
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Structural and functional alterations of neuromuscular junctions in NCAM-deficient mice.

机译:NCAM缺陷小鼠神经肌肉接头的结构和功能改变。

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The role of neural cell adhesion molecule (NCAM) in the development and maturation of the neuromuscular junction (NMJ) was explored by characterizing structurally and functionally NMJs from postnatal day 11 (P11) to P30 +/+, +/-, and -/- NCAM null mutant mice. Differences in NCAM levels resulted in alterations in the size and shape of NMJs, with -/- NMJs being smaller. Additionally both the withdrawal of polyneuronal innervation and the selective accumulation of synaptic vesicle protein in the presynaptic terminal were delayed. These observations suggest that the bidirectional signaling responsible for these events is impaired at -/- NMJs. Functionally, miniature end plate potential size, end plate potential size, and quantal content did not differ from that of wild type under either normal or low release conditions. However at normal release conditions, -/- NMJs, unlike +/+ NMJs, lacked paired-pulse facilitation. The most striking abnormality was the inability of NCAM null junctions to maintain transmitter output with repetitive stimuli. Combined electrophysiological and FM1-43-labeling studies suggest that NCAM null junctions are unable either to dock or to mobilize a sufficient number of vesicles at high but physiological rates of transmitter release. Taken together our observations show that many aspects of transmission are normal and, thus, that many presynaptic and postsynaptic molecules have assembled properly in the absence of NCAM. However, the fact that NCAM was required for specific aspects of transmission, including paired-pulse facilitation and reliable transmission with repetitive stimuli, suggests that NCAM either is directly involved in these processes or is required for the proper organization and/or function of other molecules underlying these processes.
机译:通过表征从出生后第11天(P11)到P30 + / +,+和+,-和-/的结构和功能性NMJ,探索了神经细胞粘附分子(NCAM)在神经肌肉接头(NMJ)的发育和成熟中的作用。 -NCAM空突变小鼠。 NCAM水平的差异导致NMJ的大小和形状发生变化,其中-/-NMJ较小。另外,多神经支配的撤回和突触前末端中突触小泡蛋白的选择性积累均被延迟。这些观察结果表明,负责这些事件的双向信号在-/-NMJ处受损。在功能上,在正常或低释放条件下,微型终板电位大小,终板电位大小和定量含量与野生型没有区别。但是,在正常的释放条件下,-/-NMJ与+ / + NMJ不同,它缺少成对脉冲促进。最显着的异常是NCAM空连接无法通过重复的刺激来维持发射机的输出。结合电生理学和FM1-43标记的研究表明,NCAM空连接无法以高但生理性的递质释放速率停靠或动员足够数量的囊泡。在一起我们的观察表明,传输的许多方面是正常的,因此,在没有NCAM的情况下,许多突触前和突触后分子已正确组装。但是,NCAM是传输的特定方面所必需的,包括成对脉冲促进和具有重复刺激的可靠传输,这一事实表明NCAM要么直接参与这些过程,要么是其他分子的正确组织和/或功能所必需的。这些过程的基础。

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