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神经肌肉突触消除过程中竞争输入之间神经递质释放概率的差异。

Disparity in neurotransmitter release probability among competing inputs during neuromuscular synapse elimination.

作者信息

Kopp D M, Perkel D J, Balice-Gordon R J

机构信息

Department of Neuroscience, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104-6074, USA.

出版信息

J Neurosci. 2000 Dec 1;20(23):8771-9. doi: 10.1523/JNEUROSCI.20-23-08771.2000.

Abstract

Competition among the several motor axons transiently innervating neonatal muscle fibers results in an increasing disparity in the quantal content and synaptic territory of each competitor, culminating in the permanent loss of all but one axon from neuromuscular junctions. We asked whether differences in the probability of neurotransmitter release also contribute to the increasing disparity in quantal content among competing inputs, and when in the process of competition changes in release probability become apparent. To address these questions, intracellular recordings were made from dually innervated neonatal mouse soleus muscle fibers, and quantal content and paired-pulse facilitation were evaluated for each input. At short interpulse intervals, paired-pulse facilitation was significantly higher for the weaker input with the smaller quantal content than the stronger input with the larger quantal content. Because neurotransmitter release probability across all release sites is inversely related to the extent of facilitation observed after paired-pulse stimulation, this result suggests that release probability is lower for weak compared with strong inputs innervating the same junction. A disparity in the probability of neurotransmitter release thus contributes to the disparity in quantal content that occurs during synaptic competition. Together, this work suggests that an input incapable of sustaining a high release probability may be at a competitive disadvantage for synaptic maintenance.

摘要

在短暂支配新生肌纤维的几条运动轴突之间的竞争,导致每个竞争者在量子含量和突触区域上的差异不断增大,最终除一条轴突外,所有轴突都从神经肌肉接头处永久消失。我们询问神经递质释放概率的差异是否也导致了竞争输入之间量子含量差异的增加,以及在竞争过程中释放概率的变化何时变得明显。为了解决这些问题,我们对双重支配的新生小鼠比目鱼肌纤维进行了细胞内记录,并评估了每个输入的量子含量和双脉冲易化。在短脉冲间隔时,量子含量较小的较弱输入的双脉冲易化显著高于量子含量较大的较强输入。由于所有释放位点的神经递质释放概率与双脉冲刺激后观察到的易化程度呈反比,这一结果表明,支配同一接头的弱输入与强输入相比,释放概率更低。因此,神经递质释放概率的差异导致了突触竞争期间量子含量的差异。总之,这项工作表明,无法维持高释放概率的输入在突触维持方面可能处于竞争劣势。

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