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钠通道聚集在受神经支配和去神经支配的再生肌肉中的原突触部位。

Sodium channels aggregate at former synaptic sites in innervated and denervated regenerating muscles.

作者信息

Lupa M T, Caldwell J H

机构信息

University of Colorado Health Sciences Center, Department of Cellular and Structural Biology, Denver 80262.

出版信息

J Cell Biol. 1994 Jan;124(1-2):139-47. doi: 10.1083/jcb.124.1.139.

Abstract

The role of innervation in the establishment and regulation of the synaptic density of voltage-activated Na channels (NaChs) was investigated at regenerating neuromuscular junctions. Rat muscles were induced to degenerate after injection of the Australian tiger snake toxin, notexin. The loose-patch voltage clamp technique was used to measure the density and distribution of NaChs on muscle fibers regenerating with or without innervation. In either case, new myofibers formed within the original basal lamina sheaths, and, NaChs became concentrated at regenerating endplates nearly as soon as they formed. The subsequent increase in synaptic NaCh density followed a time course similar to postnatal muscles. Neuromuscular endplates regenerating after denervation, with no nerve terminals present, had NaCh densities not significantly different from endplates regenerating in the presence of nerve terminals. The results show that the nerve terminal is not required for the development of an enriched NaCh density at regenerating neuromuscular synapses and implicate Schwann cells or basal lamina as the origin of the signal for NaCh aggregation. In contrast, the change in expression from the immature to the mature form of the NaCh isoform that normally accompanies development occurred only partially on muscles regenerating in the absence of innervation. This aspect of NaCh regulation is thus dependent upon innervation.

摘要

我们在再生的神经肌肉接头处研究了神经支配在电压激活钠通道(NaChs)突触密度建立和调节中的作用。注射澳大利亚虎蛇毒素(notexin)后诱导大鼠肌肉退化。采用松散膜片钳技术测量有无神经支配情况下肌肉纤维上NaChs的密度和分布。在这两种情况下,新的肌纤维都在原来的基膜鞘内形成,并且,NaChs几乎在它们形成后立即就在再生终板处聚集。随后突触NaCh密度的增加遵循与出生后肌肉相似的时间进程。去神经后再生的神经肌肉终板,不存在神经末梢,其NaCh密度与有神经末梢时再生的终板没有显著差异。结果表明,在再生的神经肌肉突触处,丰富的NaCh密度的形成不需要神经末梢,并提示施万细胞或基膜是NaCh聚集信号的来源。相反,正常发育过程中伴随的NaCh亚型从不成熟形式到成熟形式的表达变化,在无神经支配情况下再生的肌肉中仅部分发生。因此,NaCh调节的这一方面依赖于神经支配。

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