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γ-氨基丁酸能中间神经元回路输出的发育重组

Developmental reorganization of the output of a GABAergic interneuronal circuit.

作者信息

Xu Huaying, Clement Arthur, Wright Terrence Michael, Wenner Peter

机构信息

Department of Physiology, Room 601, Whitehead Bldg., Emory University, School of Medicine, Atlanta, GA, 30340, USA.

出版信息

J Neurophysiol. 2007 Apr;97(4):2769-79. doi: 10.1152/jn.01324.2006. Epub 2007 Jan 24.

Abstract

Locally projecting inhibitory interneurons play a crucial role in the patterning and timing of network activity. However, because of their relative inaccessibility, little is known about their development or incorporation into circuits. In this report we demonstrate that the GABAergic R-interneuron circuit undergoes a reorganization in the chick embryo spinal cord between embryonic days 8 and 15 (E8 and E15). R-interneurons receive synaptic input from and project back to motoneurons. By stimulating motoneurons projecting in one ventral root and recording the disynaptic response from motoneurons in adjacent segments, we show that the output of the R-interneuron circuit is reorganized during development. After stimulation of the LS2 ventral root, disynaptic responses observed in whole cell recordings became more common and stronger for LS3 motoneurons and less common for the more distant LS4 motoneurons from E8 to E10. Optical studies demonstrated that R-interneurons activated by LS2 stimulation were restricted to the LS2 segment and had a small glutamatergic component at both E8 and E10, but that more R-interneurons were activated within the segment by E10. The recruitment of more LS2 R-interneurons at E10 is likely to contribute to stronger projections to LS3 motoneurons, but the fact that fewer LS4 motoneurons receive this input is more consistent with a functional refinement of the more distant projection of the GABAergic R-interneuron. Interestingly, this pattern of reorganization was not observed throughout the rostrocaudal extent of the cord, introducing the possibility that refinement could serve to remove connections between functionally unrelated interneurons and motoneurons.

摘要

局部投射抑制性中间神经元在网络活动的模式形成和时间安排中起着关键作用。然而,由于它们相对难以接近,人们对它们的发育或融入神经回路的情况知之甚少。在本报告中,我们证明了GABA能R中间神经元回路在鸡胚脊髓胚胎第8天至第15天(E8和E15)之间经历了重组。R中间神经元从运动神经元接收突触输入并投射回运动神经元。通过刺激投射到一个腹根的运动神经元并记录相邻节段运动神经元的双突触反应,我们表明R中间神经元回路的输出在发育过程中发生了重组。刺激LS2腹根后,在全细胞记录中观察到的双突触反应在E8至E10期间对于LS3运动神经元变得更加常见和强烈,而对于更远的LS4运动神经元则变得不那么常见。光学研究表明,由LS2刺激激活的R中间神经元在E8和E10时都局限于LS2节段,并且有一小部分谷氨酸能成分,但到E10时该节段内有更多的R中间神经元被激活。E10时更多LS2 R中间神经元的募集可能有助于对LS3运动神经元形成更强的投射,但较少LS4运动神经元接受这种输入这一事实更符合GABA能R中间神经元更远距离投射的功能精细化。有趣的是,这种重组模式在脊髓的前后范围内并未观察到,这就提出了精细化可能用于消除功能不相关的中间神经元和运动神经元之间连接的可能性。

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