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PMID: 11472840 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Graded expression patterns of ephrin-As in the superior colliculus after lesion of the adult mouse optic nerve.

Mechanisms of development ·Vol. 106 ·No. 1-2 ·2001-08-00 ·Pages 119-27

Knöll B, Isenmann S, Kilic E, Walkenhorst J, Engel S, Wehinger J, Bähr M, Drescher U

Abstract

The idea has been put forward that molecules and mechanisms acting during development are re-used during regeneration in the adult, for example in response to traumatic injury in order to re-establish the functional integrity of neuronal circuits. Members of the Eph family of receptor tyrosine kinases and their 'ligands', the ephrins, play a prominent role during development of the retinocollicular projection in rodents, where EphA receptors and ephrin-As are expressed in gradients in both the retina and the superior colliculi (SC). We were interested in investigating whether EphA family members are also expressed or re-expressed in the adult after optic nerve lesion, since the presence of axon guidance information is an important prerequisite for a topographically appropriate re-connection by retinal ganglion cell (RGC) axons. This analysis was encouraged by results showing that RGC axons do not exert guidance preferences in response to membranes from adult unlesioned SC, but in response to membranes from the adult deafferented SC. We found a graded expression pattern of ephrin-As in the SC both before and after deafferentation, which was remarkably similar to those found during development. EphA receptor levels were reduced in the SC after deafferentation and the expression patterns of the EphB family were not changed. In particular, the presence of a graded ephrin-A expression in the deafferented SC suggests that - if robust regeneration of RGC axons can be achieved - topographic guidance information as a likely requirement for a functionally successful re-establishment of the retinocollicular projection is available.

MeSH Terms
Animals Axons/physiology Biological Evolution Denervation Ephrin-A2 Ephrin-A3 Ephrin-A4 Ephrin-A5 Ephrin-B2 Gene Expression In Situ Hybridization Ligands Membrane Proteins/genetics,metabolism Mice Mice, Inbred C57BL Nerve Regeneration Optic Nerve/physiology,surgery RNA, Messenger/genetics,metabolism Receptor Protein-Tyrosine Kinases/genetics,metabolism Receptor, EphA7 Receptor, EphB4 Receptors, Eph Family Retina/metabolism Retinal Ganglion Cells/physiology Superior Colliculi/metabolism Transcription Factors/genetics,metabolism Visual Pathways
Chemicals
Ephrin-A2 Ephrin-A3 Ephrin-A4 Ephrin-A5 Ephrin-B2 Ligands Membrane Proteins RNA, Messenger Transcription Factors Receptor Protein-Tyrosine Kinases Receptor, EphA7 Receptor, EphB4 Receptors, Eph Family
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Knöll B
Department of Physical Biology, Max-Planck-Institute for Developmental Biology, Spemannstrasse 35, 72076, Tübingen, Germany.
Isenmann S
Kilic E
Walkenhorst J
Engel S
Wehinger J
Bähr M
Drescher U
Article Info
Journal
Mechanisms of development
Abbr.
Mech Dev
ISSN
0925-4773
Published
2001-08-00
Pages
119-27
Language
English
Region
Ireland
NLM ID
9101218
Subset
IM
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