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Spatiotemporal expression of testicular protein kinase 1 after rat sciatic nerve injury
Dong Lou1, Binbin Sun, Haixiang Wei
1Department of Orthopaedics, Affiliated Hospital of Nantong University, 226001 Nantong, People's Republic of China.
Abstract:
Testicular protein kinase 1 (TESK1), a serine/threonine kinase, has been found expressing in various tissues and cell lines. Previous reports have shown that TESK1 plays an important role in regulating actin reorganization of spreading cell on fibronectin via phosphorylating cofilin. Because of the importance of actin reorganization in radial sorting and remyelination of peripheral nerve regeneration, we investigated the spatiotemporal expression of TESK1 in a rat sciatic nerve crush model. We observed that sciatic nerve crush resulted in a significant upregulation of TESK1 from 5 days to 2 weeks and subsequent return to the control level at 4 weeks. At its peak expression, TESK1 expressed mainly in both Schwann cells (SCs) and macrophages of the distal sciatic nerve segment, but had few colocalization in axons. In addition, upregulation of TESK1 was approximately in parallel with Oct-6, and numerous SCs expressing TESK1 were Oct-6 positive. Experiments with Schwann cell primary cultures revealed that TESK1 accumulated at F-actin-rich lamellipodia of the cell periphery when SCs were plated on fibronectin, whereas it was distributed in the cytoplasm in the case of non-stimulated cells. Thus, these findings suggest that TESK1 plays important roles in promyelinating SCs, potentially through subcellular localization change and participation in integrin-mediated actin reorganization.
Insights
Testicular protein kinase 1 (TESK1) expression increases in rat sciatic nerves after injury, primarily in Schwann cells and macrophages. This suggests TESK1 is crucial for peripheral nerve regeneration and remyelination.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Testicular protein kinase 1 (TESK1) is a serine/threonine kinase involved in actin reorganization.
- Actin dynamics are critical for peripheral nerve regeneration, including radial sorting and remyelination.
Purpose of the Study:
- To investigate the spatiotemporal expression of TESK1 in a rat sciatic nerve crush model.
- To understand TESK1's role in Schwann cells during peripheral nerve repair.
Main Methods:
- Sciatic nerve crush injury in rats.
- Immunohistochemistry and Western blotting to detect TESK1 expression.
- Primary Schwann cell culture on fibronectin.
Main Results:
- Sciatic nerve crush significantly upregulated TESK1 from 5 days to 2 weeks post-injury.
- Peak TESK1 expression was observed in Schwann cells and macrophages of the distal nerve segment.
- TESK1 colocalized with Oct-6 in Schwann cells and accumulated in F-actin-rich lamellipodia in cultured cells.
Conclusions:
- TESK1 upregulation and localization suggest a role in Schwann cell migration and differentiation during nerve regeneration.
- TESK1 may participate in integrin-mediated actin reorganization, crucial for promyelinating Schwann cells.
