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Synaptic takeover: Coordinated proliferation and elimination of competing synapses imaged in living mice.

机译:突触接管:在活小鼠中成像的竞争性突触的协调增殖和消除。

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摘要

During mammalian development, synaptic circuitry in the nervous system is refined by the permanent elimination of some synaptic inputs converging on individual postsynaptic cells. This form of plasticity is due to axonal branch trimming rather than cell death. Physiological studies during the developmental period of synaptic refinement have suggested that maintained inputs increase their synaptic strength as losing inputs weaken. But, it is not understood how synaptic potentiation and weakening occur concurrently on the same postsynaptic cell.; This thesis focuses on naturally occurring synaptic refinements at the developing neuromuscular junction, which was chosen because of its unparalleled accessibility and because of the development of transgenic mice that express one or more fluorescent proteins in subsets of motor neurons. By developing a technique to image individual neonatal neuromuscular junctions repeatedly over the course of several days, I was able to monitor synaptic dynamics of two differently colored presynaptic axons converging at the same neuromuscular junction, with the postsynaptic site labeled a third color. Multiply innervated junctions in mice at one week after birth underwent a protracted process that led to the withdrawal of all but one of the inputs within the next several days. The eliminated input generally atrophied but often contained varicosities. In addition, it appeared to resorb into the parent axon but on occasion, it fragmented and remnants of this losing input remained at the junction for many hours. Concurrently, in most junctions, the remaining input grew into regions of the neuromuscular junction that were being vacated, thus conserving the established postsynaptic specialization of the muscle fiber. Hence, in this form of synaptic plasticity, new synapse formation by one axon accompanies synapse loss by the other indicating that these opposing processes are linked. However, synaptic takeover does not appear to be the driving force that causes axon withdrawal because in rare instances synapse loss occurred even though the vacated postsynaptic sites were not taken over by the remaining input. Synaptic takeover seems to be a mechanism permitting large scale and rapid increases in axon terminal area, and hence synaptic strength, without requiring new postsynaptic site formation. This process provides a potential mechanism for simultaneous proliferation and elimination of synapses in the developing brain. Moreover because this process links potentiation and synaptic weakening it is an attractive model for the particular kinds of synaptic changes thought to underlie learning and memory.
机译:在哺乳动物发育过程中,通过永久消除会聚在单个突触后细胞上的某些突触输入,可以改善神经系统中的突触回路。这种可塑性是由于轴突分支修剪而不是细胞死亡。在突触细化发展阶段的生理研究表明,随着丢失的输入减弱,保持的输入会增加其突触强度。但是,还不了解在同一突触后细胞上突触增强和减弱是如何同时发生的。本论文的重点是在发展中的神经肌肉接头处自然发生的突触细化,这是由于其无与伦比的可及性以及由于在运动神经元子集中表达一种或多种荧光蛋白的转基因小鼠的发育而选择的。通过开发一种在几天的过程中反复对单个新生儿神经肌肉接头进行成像的技术,我能够监视会聚在同一神经肌肉接头处的两个不同颜色的突触前轴突的突触动态,而突触后的部位标记为第三种颜色。出生后一周的小鼠中神经支配点的相乘经历了一个漫长的过程,导致接下来几天内除了一个输入以外的所有输入都被撤消。消除的输入通常会萎缩,但通常会包含曲张度。此外,它似乎能吸收到母轴突中,但有时会碎裂,这种失去输入的残余物会在连接处保留许多小时。同时,在大多数关节中,剩余的输入长入神经肌肉连接中被腾空的区域,从而保留了已建立的突触后肌肉纤维的专长。因此,在这种形式的突触可塑性中,一个轴突形成的新突触伴随着另一个突触的丧失,表明这些相反的过程是相互联系的。但是,突触接管似乎不是导致轴突退缩的驱动力,因为在极少数情况下,即使腾空的突触后位点没有被其余输入所接管,也会发生突触损失。突触接管似乎是一种机制,它允许大规模且快速增加轴突末端区域,从而突触强度,而无需新的突触后位点形成。这个过程提供了一个潜在的机制,可同时在发育中的大脑中增殖和消除突触。此外,由于该过程将增强和突触减弱联系在一起,因此它是一种特殊的模型,可用于认为是学习和记忆基础的特定种类的突触变化。

著录项

  • 作者

    Walsh, Mark Kim.;

  • 作者单位

    Washington University.;

  • 授予单位 Washington University.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学;
  • 关键词

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