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Spatio-temporal and Cellular Expression Patterns of PTK7 in the Healthy and Traumatically Injured Rat and Human
Pau González1, Carlos González-Fernández2, Yolanda Campos-Martín3
1Laboratory of Molecular Neurology, Hospital Nacional de Parapléjicos, Toledo, Spain. paug@sescam.jccm.es.
Abstract:
Despite the emerging role of protein tyrosine kinase 7 (PTK7) as a Wnt co-receptor and the relevant functions of the Wnt family of proteins in spinal cord injury (SCI), the potential involvement of PTK7 in SCI is currently unknown. As a first essential step to shed light on this issue, we evaluated the spatio-temporal and cellular expression patterns of PTK7 in healthy and traumatically injured rat and human spinal cords. In the uninjured rats, PTK7 expression was observed in the ependymal epithelium, endothelial cells, meningeal fibronectin-expressing cells, and specific axonal tracts, but not in microglia, astrocytes, neurons, oligodendrocytes, or NG2+ cells. After rat SCI, the mRNA expression of PTK7 was significantly increased, while its spatio-temporal and cellular protein expression patterns also suffered evident changes in the injured region. Briefly, the expression of PTK7 in the affected areas was observed in axons, reactive astrocytes, NG2+ and fibronectin-expressing cells, and in a subpopulation of reactive microglia/macrophages and blood vessels. Finally, in both healthy and traumatically injured human spinal cords, PTK7 expression pattern was similar to that observed in the rat, although some specific differences were found. In conclusion, we demonstrate for the first time that PTK7 is constitutively expressed in the healthy adult rat and human spinal cord and that its expression pattern clearly varied after rat and human SCI which, to our knowledge, constitutes the first experimental evidence pointing to the potential involvement of this co-receptor in physiological and pathological spinal cord functioning.
Insights
Protein tyrosine kinase 7 (PTK7) is present in healthy spinal cords and changes expression after injury. This study is the first to show PTK7
Area of Science:
- Neuroscience
- Molecular Biology
- Regenerative Medicine
Background:
- Protein tyrosine kinase 7 (PTK7) functions as a Wnt co-receptor.
- Wnt signaling pathways are crucial for spinal cord injury (SCI) recovery.
- The role of PTK7 in SCI remains unexplored.
Purpose of the Study:
- To investigate the expression patterns of PTK7 in healthy and injured spinal cords.
- To determine the cellular localization of PTK7 in both rat and human spinal cord tissues.
- To establish the potential involvement of PTK7 in spinal cord physiology and pathology.
Main Methods:
- Analysis of PTK7 mRNA and protein expression.
- Immunohistochemistry and Western blotting techniques.
- Examination of both healthy and traumatically injured rat and human spinal cord samples.
Main Results:
- PTK7 is constitutively expressed in healthy rat and human spinal cords.
- SCI significantly alters PTK7 mRNA and protein expression.
- PTK7 expression is detected in axons, reactive astrocytes, microglia/macrophages, and blood vessels post-injury.
Conclusions:
- PTK7 is expressed in the healthy spinal cord and its expression changes after SCI.
- This study provides the first evidence for PTK7's involvement in spinal cord function and injury.
- Further research into PTK7's role in SCI is warranted.
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