Getting axons onto the right path: the role of transcription factors in axon guidance
Open Access
- 1 February 2007
- journal article
- review article
- Published by The Company of Biologists in Development
- Vol. 134 (3) , 439-448
- https://doi.org/10.1242/dev.02762
Abstract
The normal function of the nervous system requires that the constituent neurons are precisely `wired together'. During embryogenesis, each neuron extends an axonal process, which can navigate a considerable distance to its target. Although a number of the receptors and guidance signals that direct axonal growth have been identified, less is known about the transcription factors that regulate the expression of these molecules within the neuron and its environment. This review examines recent studies in vertebrates and Drosophila that address the identity of the transcription factors that either control the repertoire of guidance receptors and signals that permits an axon to take a particular trajectory or act themselves as novel extracellular guidance factors.Keywords
This publication has 73 references indexed in Scilit:
- Asymmetrical β-actin mRNA translation in growth cones mediates attractive turning to netrin-1Nature Neuroscience, 2006
- Zfh1, a somatic motor neuron transcription factor, regulates axon exit from the CNSDevelopmental Biology, 2006
- Development of Drosophila motoneurons: Specification and morphologySeminars in Cell & Developmental Biology, 2005
- The Homeobox Transcription Factor Even-skipped Regulates Netrin-Receptor Expression to Control Dorsal Motor-Axon Projections in DrosophilaCurrent Biology, 2005
- Zic2 Patterns Binocular Vision by Specifying the Uncrossed Retinal ProjectionCell, 2003
- Molecular Mechanisms of Axon GuidanceScience, 2002
- UNC-40, a C. elegans Homolog of DCC (Deleted in Colorectal Cancer), Is Required in Motile Cells Responding to UNC-6 Netrin CuesCell, 1996
- Deleted in Colorectal Cancer (DCC) Encodes a Netrin ReceptorCell, 1996
- Rostral optic tectum acquires caudal characteristics following ectopic Engrailed expressionCurrent Biology, 1996
- Movement and extension of isolated growth conesExperimental Cell Research, 1977