Wnt signaling controls pro-regenerative Collagen XII in functional spinal cord regeneration in zebrafish

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作者
Daniel Wehner
Themistoklis M. Tsarouchas
Andria Michael
Christa Haase
Gilbert Weidinger
Michell M. Reimer
Thomas Becker
Catherina G. Becker
机构
[1] University of Edinburgh,Centre for Neuroregeneration
[2] TechnischeUniversität Dresden,Institute for Immunology
[3] Ulm University,Institute of Biochemistry and Molecular Biology
[4] Technische Universität Dresden,undefined
[5] DFG-Center of Regenerative Therapies Dresden,undefined
[6] Cluster of Excellence at the TU Dresden,undefined
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The inhibitory extracellular matrix in a spinal lesion site is a major impediment to axonal regeneration in mammals. In contrast, the extracellular matrix in zebrafish allows substantial axon re-growth, leading to recovery of movement. However, little is known about regulation and composition of the growth-promoting extracellular matrix. Here we demonstrate that activity of the Wnt/β-catenin pathway in fibroblast-like cells in the lesion site is pivotal for axon re-growth and functional recovery. Wnt/β-catenin signaling induces expression of col12a1a/b and deposition of Collagen XII, which is necessary for axons to actively navigate the non-neural lesion site environment. Overexpression of col12a1a rescues the effects of Wnt/β-catenin pathway inhibition and is sufficient to accelerate regeneration. We demonstrate that in a vertebrate of high regenerative capacity, Wnt/β-catenin signaling controls the composition of the lesion site extracellular matrix and we identify Collagen XII as a promoter of axonal regeneration. These findings imply that the Wnt/β-catenin pathway and Collagen XII may be targets for extracellular matrix manipulations in non-regenerating species.
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