首页> 美国卫生研究院文献>The Journal of Neuroscience >Distinct Roles of Different Neural Cell Adhesion Molecule (NCAM) Isoforms in Synaptic Maturation Revealed by Analysis of NCAM 180 kDa Isoform-Deficient Mice
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Distinct Roles of Different Neural Cell Adhesion Molecule (NCAM) Isoforms in Synaptic Maturation Revealed by Analysis of NCAM 180 kDa Isoform-Deficient Mice

机译:通过NCAM 180 kDa亚型缺陷小鼠的分析揭示了不同神经细胞粘附分子(NCAM)亚型在突触成熟中的不同作用。

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摘要

Mice that lack all three major isoforms of neural cell adhesion molecule (NCAM) (180 and 140 kDa transmembrane, and 120 kDa glycosylphosphatidylinositol linked) were previously shown to exhibit major alterations in the maturation of their neuromuscular junctions (NMJs). Specifically, even by postnatal day 30, they failed to downregulate from along their axons and terminals an immature, brefeldin A-sensitive, synaptic vesicle-cycling mechanism that used L-type Ca2+ channels. In addition, these NCAM null NMJs were unable to maintain effective transmitter output with high-frequency repetitive stimulation, exhibiting both severe initial depression and subsequent cyclical periods of total transmission failures that were of presynaptic origin. As reported here, mice that lack only the 180 kDa isoform of NCAM downregulated the immature vesicle-cycling mechanism on schedule, implicating either the 140 or 120 kDa NCAM isoforms in this important maturational event. However, 180 NCAM-deficient mice still exhibited many functional transmission defects. Although 180 NCAM null NMJs did not show the severe initial depression of NCAM null NMJs, they still had cyclical periods of complete transmission failure. In addition, several presynaptic molecules were expressed at lower levels or were more diffusely localized. Thus, the 180 kDa isoform of NCAM appears to play an important role in the molecular organization of the presynaptic terminal and in ensuring effective transmitter output with repetitive stimulation. Our results also suggest that PKC and MLCK (myosin light chain kinase) may be downstream effectors of NCAM in these processes. Together, these results indicate that different isoforms of NCAM mediate distinct and important events in presynaptic maturation.
机译:先前缺乏所有三个神经细胞粘附分子(NCAM)(180和140 kDa跨膜,和120 kDa糖基磷脂酰肌醇连接)的所有主要同工型的小鼠在其神经肌肉接头(NMJs)的成熟过程中显示出重大变化。具体来说,即使在出生后第30天,他们也未能从其轴突和末端下调未成熟的,对布雷菲德菌素A敏感的突触小泡循环机制,该机制使用L型Ca 2 + 通道。此外,这些NCAM空NMJ不能通过高频重复刺激来维持有效的发射器输出,表现出严重的初始压抑和随后的周期性周期,这些周期都是突触前起源的。如此处报道的,仅缺少180 kDa NCAM亚型的小鼠会如期下调未成熟的囊泡循环机制,从而在这一重要的成熟事件中牵涉140或120 kDa NCAM亚型。但是,180只NCAM缺陷小鼠仍表现出许多功能性传输缺陷。尽管180个NCAM空NMJ并未显示出严重的NCAM空NMJ初始严重压制,但它们仍具有周期性的完全传输失败的周期。另外,一些突触前分子以较低水平表达或更多地分散定位。因此,NCAM的180 kDa亚型似乎在突触前末端的分子组织中以及在重复刺激下确保有效的递质输出中起重要作用。我们的结果还表明,在这些过程中,PKC和MLCK(肌球蛋白轻链激酶)可能是NCAM的下游效应物。总之,这些结果表明,NCAM的不同亚型在突触前成熟中介导不同且重要的事件。

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