Semaphorin6A acts as a gate keeper between the central and the peripheral nervous system

<p>Abstract</p> <p>Background</p> <p>During spinal cord development, expression of chicken SEMAPHORIN6A (SEMA6A) is almost exclusively found in the boundary caps at the ventral motor axon exit point and at the dorsal root entry site. The boundary cap cells are derived f...

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Main Authors: Sadhu Rejina, Andermatt Irwin, Domanitskaya Elena, Mauti Olivier, Stoeckli Esther T
Format: Article
Language:English
Published: BMC 2007-12-01
Series:Neural Development
Online Access:http://www.neuraldevelopment.com/content/2/1/28
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spelling doaj-0b0dfe5d6adb4185b8999520572c1e002020-11-24T21:21:30ZengBMCNeural Development1749-81042007-12-01212810.1186/1749-8104-2-28Semaphorin6A acts as a gate keeper between the central and the peripheral nervous systemSadhu RejinaAndermatt IrwinDomanitskaya ElenaMauti OlivierStoeckli Esther T<p>Abstract</p> <p>Background</p> <p>During spinal cord development, expression of chicken SEMAPHORIN6A (SEMA6A) is almost exclusively found in the boundary caps at the ventral motor axon exit point and at the dorsal root entry site. The boundary cap cells are derived from a population of late migrating neural crest cells. They form a transient structure at the transition zone between the peripheral nervous system (PNS) and the central nervous system (CNS). Ablation of the boundary cap resulted in emigration of motoneurons from the ventral spinal cord along the ventral roots. Based on its very restricted expression in boundary cap cells, we tested for a role of Sema6A as a gate keeper between the CNS and the PNS.</p> <p>Results</p> <p>Downregulation of Sema6A in boundary cap cells by <it>in ovo </it>RNA interference resulted in motoneurons streaming out of the spinal cord along the ventral roots, and in the failure of dorsal roots to form and segregate properly. PlexinAs interact with class 6 semaphorins and are expressed by both motoneurons and sensory neurons. Knockdown of PlexinA1 reproduced the phenotype seen after loss of Sema6A function both at the ventral motor exit point and at the dorsal root entry site of the lumbosacral spinal cord. Loss of either PlexinA4 or Sema6D function had an effect only at the dorsal root entry site but not at the ventral motor axon exit point.</p> <p>Conclusion</p> <p>Sema6A acts as a gate keeper between the PNS and the CNS both ventrally and dorsally. It is required for the clustering of boundary cap cells at the PNS/CNS interface and, thus, prevents motoneurons from streaming out of the ventral spinal cord. At the dorsal root entry site it organizes the segregation of dorsal roots.</p> http://www.neuraldevelopment.com/content/2/1/28
collection DOAJ
language English
format Article
sources DOAJ
author Sadhu Rejina
Andermatt Irwin
Domanitskaya Elena
Mauti Olivier
Stoeckli Esther T
spellingShingle Sadhu Rejina
Andermatt Irwin
Domanitskaya Elena
Mauti Olivier
Stoeckli Esther T
Semaphorin6A acts as a gate keeper between the central and the peripheral nervous system
Neural Development
author_facet Sadhu Rejina
Andermatt Irwin
Domanitskaya Elena
Mauti Olivier
Stoeckli Esther T
author_sort Sadhu Rejina
title Semaphorin6A acts as a gate keeper between the central and the peripheral nervous system
title_short Semaphorin6A acts as a gate keeper between the central and the peripheral nervous system
title_full Semaphorin6A acts as a gate keeper between the central and the peripheral nervous system
title_fullStr Semaphorin6A acts as a gate keeper between the central and the peripheral nervous system
title_full_unstemmed Semaphorin6A acts as a gate keeper between the central and the peripheral nervous system
title_sort semaphorin6a acts as a gate keeper between the central and the peripheral nervous system
publisher BMC
series Neural Development
issn 1749-8104
publishDate 2007-12-01
description <p>Abstract</p> <p>Background</p> <p>During spinal cord development, expression of chicken SEMAPHORIN6A (SEMA6A) is almost exclusively found in the boundary caps at the ventral motor axon exit point and at the dorsal root entry site. The boundary cap cells are derived from a population of late migrating neural crest cells. They form a transient structure at the transition zone between the peripheral nervous system (PNS) and the central nervous system (CNS). Ablation of the boundary cap resulted in emigration of motoneurons from the ventral spinal cord along the ventral roots. Based on its very restricted expression in boundary cap cells, we tested for a role of Sema6A as a gate keeper between the CNS and the PNS.</p> <p>Results</p> <p>Downregulation of Sema6A in boundary cap cells by <it>in ovo </it>RNA interference resulted in motoneurons streaming out of the spinal cord along the ventral roots, and in the failure of dorsal roots to form and segregate properly. PlexinAs interact with class 6 semaphorins and are expressed by both motoneurons and sensory neurons. Knockdown of PlexinA1 reproduced the phenotype seen after loss of Sema6A function both at the ventral motor exit point and at the dorsal root entry site of the lumbosacral spinal cord. Loss of either PlexinA4 or Sema6D function had an effect only at the dorsal root entry site but not at the ventral motor axon exit point.</p> <p>Conclusion</p> <p>Sema6A acts as a gate keeper between the PNS and the CNS both ventrally and dorsally. It is required for the clustering of boundary cap cells at the PNS/CNS interface and, thus, prevents motoneurons from streaming out of the ventral spinal cord. At the dorsal root entry site it organizes the segregation of dorsal roots.</p>
url http://www.neuraldevelopment.com/content/2/1/28
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