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偏离中线:Robo受体如何调节交叉后脊髓连合轴突的导向

Leaving the midline: how Robo receptors regulate the guidance of post-crossing spinal commissural axons.

作者信息

Reeber Stacey L, Kaprielian Zaven

机构信息

Dominick P. Purpura Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY, USA.

出版信息

Cell Adh Migr. 2009 Jul-Sep;3(3):300-4. doi: 10.4161/cam.3.3.9156. Epub 2009 Jul 2.

Abstract

In the developing nervous system, pathfinding axons navigate through a series of intermediate targets in order to form synaptic connections. Vertebrate spinal commissural axons extend toward and across the floor plate (FP), a key intermediate target located at the ventral midline (VM). Subsequently, post-crossing commissural axons grow either alongside or significant distances away from the floor plate (FP), but never re-cross the VM. Consistent with this behavior, post-crossing commissural axons lose responsiveness to the FP-associated chemoattractants, Netrin-1 and SHH, and gain responsiveness to Slits, which are potent midline repellents, in vitro. In addition, the results of several in vivo studies suggest that the upregulation of Slit-binding repulsive Robo receptors, Robo1/2, alters the responsiveness of decussated commissural axons to midline guidance cues. Nevertheless, in vertebrates, it is unclear whether Robo1/2 are the sole or major repellent receptors responsible for driving these commissural axons away from the VM and preventing their re-entry into the FP. We recently re-visited these issues in the chick spinal cord by assessing the consequences of manipulating Robo expression on commissural axons in ovo. Our findings suggest that, at least in chick embryos, the upregulation of repulsive Robos on post-crossing axons alters the responsiveness of these axons to midline repellents and facilitates their expulsion from, but is not likely to have a significant role in preventing their re-entry into the VM.

摘要

在发育中的神经系统中,进行路径寻找的轴突会穿过一系列中间靶点,以形成突触连接。脊椎动物脊髓连合轴突向位于腹侧中线(VM)的关键中间靶点——底板(FP)延伸并穿过该区域。随后,穿过底板后的连合轴突要么沿着底板生长,要么与底板保持相当远的距离,但绝不会再次穿过腹侧中线。与这种行为一致的是,穿过底板后的连合轴突在体外对与底板相关的化学引诱剂Netrin-1和SHH失去反应性,而对强效的中线排斥因子Slits获得反应性。此外,多项体内研究结果表明,与Slit结合的排斥性Robo受体Robo1/2的上调,改变了交叉后的连合轴突对中线导向信号的反应性。然而,在脊椎动物中,尚不清楚Robo1/2是否是驱动这些连合轴突远离腹侧中线并防止它们重新进入底板的唯一或主要排斥受体。我们最近通过评估在鸡胚中操纵Robo表达对连合轴突的影响,重新审视了鸡脊髓中的这些问题。我们的研究结果表明,至少在鸡胚中,交叉后轴突上排斥性Robo的上调改变了这些轴突对中线排斥因子的反应性,并促进它们从腹侧中线被驱逐,但在防止它们重新进入腹侧中线方面可能没有显著作用。

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本文引用的文献

1
Manipulating Robo expression in vivo perturbs commissural axon pathfinding in the chick spinal cord.
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