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Neuron-specific inactivation of Wt1 alters locomotion in mice and changes interneuron composition in the spinal cord

Authors :
Manuela Schmidt
Klas Kullander
Ingrid L. Vargas Panesso
Thomas Klopstock
Lore Becker
Fabio Viegas Caixeta
Atieh Tafreshiha
Kathrin Weber
Christoph Englert
Sven Guenther
Martin Hrabé de Angelis
Sharn Perry
Danny Schnerwitzki
Anna O. Ivanova
Paul Cramer
Source :
Life science alliance 1(4), e201800106 (2018). doi:10.26508/lsa.201800106, Life science alliance, 1(4):e201800106, Life Sci. All. 1:e201800106 (2018), Life Science Alliance
Publication Year :
2018
Publisher :
EMBO Press, 2018.

Abstract

This work demonstrates a role for the Wilms tumor protein Wt1 in the specification of neurons that are involved in the control of locomotion.<br />Locomotion is coordinated by neuronal circuits of the spinal cord. Recently, dI6 neurons were shown to participate in the control of locomotion. A subpopulation of dI6 neurons expresses the Wilms tumor suppressor gene Wt1. However, the function of Wt1 in these cells is not understood. Here, we aimed to identify behavioral changes and cellular alterations in the spinal cord associated with Wt1 deletion. Locomotion analyses of mice with neuron-specific Wt1 deletion revealed a slower walk with a decreased stride frequency and an increased stride length. These mice showed changes in their fore-/hindlimb coordination, which were accompanied by a loss of contralateral projections in the spinal cord. Neonates with Wt1 deletion displayed an increase in uncoordinated hindlimb movements and their motor neuron output was arrhythmic with a decreased frequency. The population size of dI6, V0, and V2a neurons in the developing spinal cord of conditional Wt1 mutants was significantly altered. These results show that the development of particular dI6 neurons depends on Wt1 expression and that loss of Wt1 is associated with alterations in locomotion.

Details

Language :
English
Database :
OpenAIRE
Journal :
Life science alliance 1(4), e201800106 (2018). doi:10.26508/lsa.201800106, Life science alliance, 1(4):e201800106, Life Sci. All. 1:e201800106 (2018), Life Science Alliance
Accession number :
edsair.doi.dedup.....46bf8a6a7dcbac5948a43c0fb922b5bb
Full Text :
https://doi.org/10.26508/lsa.201800106