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Sonic hedgehog 是中脑神经多巴胺能轴突的趋化因子。

Sonic hedgehog is a chemoattractant for midbrain dopaminergic axons.

机构信息

Department of Pathology, Center for Neurobiology and Behavior and Taub Institute, Columbia University College of Physicians and Surgeons, New York, New York, United States of America.

出版信息

PLoS One. 2009 Sep 23;4(9):e7007. doi: 10.1371/journal.pone.0007007.

Abstract

Midbrain dopaminergic axons project from the substantia nigra (SN) and the ventral tegmental area (VTA) to rostral target tissues, including the striatum, pallidum, and hypothalamus. The axons from the medially located VTA project primarily to more medial target tissues in the forebrain, whereas the more lateral SN axons project to lateral targets including the dorsolateral striatum. This structural diversity underlies the distinct functions of these pathways. Although a number of guidance cues have been implicated in the formation of the distinct axonal projections of the SN and VTA, the molecular basis of their diversity remains unclear. Here we investigate the molecular basis of structural diversity in mDN axonal projections. We find that Sonic Hedgehog (Shh) is expressed at a choice point in the course of the rostral dopaminergic projections. Furthermore, in midbrain explants, dopaminergic projections are attracted to a Shh source. Finally, in mice in which Shh signaling is inactivated during late neuronal development, the most medial dopaminergic projections are deficient. In addition to the role of Shh in the induction of mDN precursors, Shh plays an important role in dopaminergic axon pathfinding to rostral target tissues. Furthermore, Shh signaling is involved in determining the structural diversity of these dopaminergic projections.

摘要

中脑多巴胺能轴突从黑质 (SN) 和腹侧被盖区 (VTA) 投射到前脑的向头侧靶组织,包括纹状体、苍白球和下丘脑。位于内侧的 VTA 的轴突主要投射到前脑更内侧的靶组织,而更外侧的 SN 轴突投射到包括背外侧纹状体在内的外侧靶组织。这种结构多样性是这些途径具有不同功能的基础。尽管已经有许多导向线索被牵涉到 SN 和 VTA 的不同轴突投射的形成中,但它们多样性的分子基础仍然不清楚。在这里,我们研究了 mDN 轴突投射结构多样性的分子基础。我们发现 Sonic Hedgehog (Shh) 在向头侧多巴胺能投射的过程中在一个选择点表达。此外,在中脑外植体中,多巴胺能投射被 Shh 源吸引。最后,在晚神经元发育过程中 Shh 信号失活的小鼠中,最内侧的多巴胺能投射缺失。Shh 除了在诱导 mDN 前体中的作用外,还在多巴胺能轴突向向头侧靶组织的寻径中发挥重要作用。此外,Shh 信号参与决定这些多巴胺能投射的结构多样性。

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