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Updated: Jul 7, 2026

Analysis of Schwann-astrocyte Interactions Using In Vitro Assays
Published on: January 13, 2011
Impaired intercellular adhesion and immature adherens junctions in merlin-deficient human primary schwannoma cells
C Flaiz1, T Utermark, D B Parkinson
1Department of Clinical Neurobiology, Institute of Biomedical and Clinical Science, Peninsula College for Medicine and Dentistry, Plymouth, UK.
Abstract:
Schwannomas that occur spontaneously or in patients with neurofibromatosis Type 2, lack both alleles for the tumor suppressor and plasma membrane-cytoskeleton linker merlin. We have shown that human primary schwannoma cells display activation of the RhoGTPases Rac1 and Cdc42 which results in highly dynamic and ongoing protrusive activity like ruffling. Ruffling is an initial and temporally limited step in the formation of intercellular contacts like adherens junctions that are based on the cadherin-catenin system. We tested if there is a connection between Rac1-induced ongoing ruffling and the maintenance, stabilization and functionality of adherens junctions and if this is of relevance in human, merlin-deficient schwannoma cells. We show intense ongoing ruffling is not limited to membranes of single human primary schwannoma cells, but occurs also in membranes of contacting cells, even when confluent. Live cell imaging shows that newly formed contacts are released after a short time, suggesting disturbed formation or stabilization of adherens junctions. Morphology, high phospho-tyrosine levels and cortactin staining indicate that adherens junctions are immature in human primary schwannoma cells, whereas they display characteristics of mature adherens junctions in human primary Schwann cells. When merlin is reintroduced, human primary schwannoma cells show only initial ruffling in contacting cells and adherens junctions appear more mature. We therefore propose that ongoing Rac-induced ruffling causes immature adherens junctions and leads to impaired, nonfunctional intercellular adhesion in aggregation assays in merlin-deficient schwannoma cells that could be an explanation for increased proliferation rates due to loss of contact inhibition or tumor development in general.
Insights
Merlin deficiency in schwannoma cells causes excessive cell membrane ruffling, leading to immature adherens junctions and impaired cell adhesion. Restoring merlin promotes junction maturation and reduces ruffling, suggesting a role in tumor suppression.
Area of Science:
- Cell Biology
- Oncology
- Biochemistry
Background:
- Schwannomas, often associated with neurofibromatosis Type 2, are characterized by the loss of the merlin tumor suppressor.
- Merlin (neurofibromin 2) is crucial for linking the plasma membrane to the cytoskeleton.
- Aberrant Rho GTPase activity, specifically Rac1 and Cdc42, drives excessive cell protrusion (ruffling) in merlin-deficient cells.
Purpose of the Study:
- To investigate the link between Rac1-induced ruffling and adherens junction (AJ) stability in merlin-deficient human schwannoma cells.
- To determine the functional relevance of these cellular dynamics in intercellular adhesion and potential tumor development.
Main Methods:
- Live cell imaging to observe cell-cell contact dynamics and ruffling.
- Analysis of adherens junction morphology, phospho-tyrosine levels, and cortactin staining.
- Assessment of intercellular adhesion using aggregation assays.
- Reintroduction of merlin into schwannoma cells to evaluate its effect on ruffling and AJs.
Main Results:
- Human primary schwannoma cells exhibit continuous, intense ruffling, even at cell-cell contacts.
- Newly formed cell-cell contacts are unstable, indicating defective AJ formation or stabilization.
- Adherens junctions in schwannoma cells are immature, unlike those in normal Schwann cells.
- Merlin reintroduction reduces ruffling and promotes AJ maturation.
Conclusions:
- Ongoing Rac-induced ruffling in merlin-deficient schwannoma cells leads to immature adherens junctions and impaired intercellular adhesion.
- This defect may contribute to loss of contact inhibition and increased proliferation, promoting tumor development.
- Merlin's tumor-suppressive function may involve regulating cell adhesion through cytoskeletal dynamics.
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