Sonic Hedgehog is a chemoattractant for midbrain dopaminergic axons Journal Article


Authors: Hammond, R.; Blaess, S.; Abeliovich, A.
Article Title: Sonic Hedgehog is a chemoattractant for midbrain dopaminergic axons
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. © 2009 Hammond et al.
Keywords: signal transduction; controlled study; protein expression; nonhuman; methodology; protein function; mouse; animal; metabolism; animals; mice; animal tissue; mus; biological model; models, biological; embryo; sonic hedgehog protein; hedgehog proteins; embryo pattern formation; explant; physiology; time; time factors; gene expression regulation; in situ hybridization; gene expression regulation, developmental; nerve fiber; collagen; fluorescence microscopy; microscopy, fluorescence; mesencephalon; brain mapping; nerve cell differentiation; erinaceidae; chemoattractant; chemotactic factor; dopamine; shh protein, mouse; dopaminergic nerve cell; axons; chemotactic factors
Journal Title: PLoS ONE
Volume: 4
Issue: 9
ISSN: 1932-6203
Publisher: Public Library of Science  
Date Published: 2009-09-23
Start Page: e7007
Language: English
DOI: 10.1371/journal.pone.0007007
PUBMED: 19774071
PROVIDER: scopus
PMCID: PMC2742719
DOI/URL:
Notes: --- - "Cited By (since 1996): 5" - "Export Date: 30 November 2010" - "Art. No.: e7007" - "Source: Scopus"
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  1. Sandra Blaess
    3 Blaess