Related Experiment Video
Updated: May 1, 2026

CAM-Delam Assay to Score Metastatic Properties by Quantifying Delamination and Invasion Capacity of Cancer Cells
Published on: June 2, 2022
ICAM-2 confers a non-metastatic phenotype in neuroblastoma cells by interaction with α-actinin
J M Feduska1, S G Aller1, P L Garcia1
1Department of Pharmacology and Toxicology, University of Alabama at Birmingham, Birmingham, AL, USA.
Abstract:
Progressive metastatic disease is a major cause of mortality for patients diagnosed with multiple types of solid tumors. One of the long-term goals of our laboratory is to identify molecular interactions that regulate metastasis, as a basis for developing agents that inhibit this process. Toward this goal, we recently demonstrated that intercellular adhesion molecule-2 (ICAM-2) converted neuroblastoma (NB) cells from a metastatic to a non-metastatic phenotype, a previously unknown function for ICAM-2. Interestingly, ICAM-2 suppressed metastatic but not tumorigenic potential in preclinical models, supporting a novel mechanism of regulating metastasis. We hypothesized that the effects of ICAM-2 on NB cell phenotype depend on the interaction of ICAM-2 with the cytoskeletal linker protein α-actinin. The goal of the study presented here was to evaluate the impact of α-actinin binding to ICAM-2 on the phenotype of NB tumor cells. We used in silico approaches to examine the likelihood that the cytoplasmic domain of ICAM-2 binds directly to α-actinin. We then expressed variants of ICAM-2 with mutated α-actinin-binding domains, and compared the impact of ICAM-2 and each variant on NB cell adhesion, migration, anchorage-independent growth, co-precipitation with α-actinin and production of localized and disseminated tumors in vivo. The in vitro and in vivo characteristics of cells expressing ICAM-2 variants with modified α-actinin-binding domains differed from cells expressing ICAM-2 wild type (WT) and also from cells that expressed no detectable ICAM-2. Like the WT protein, ICAM-2 variants inhibited cell adhesion, migration and colony growth in vitro. However, unlike the WT protein, ICAM-2 variants did not completely suppress development of disseminated NB tumors in vivo. The data suggest the presence of α-actinin-dependent and α-actinin-independent mechanisms, and indicate that the interaction of ICAM-2 with α-actinin is critical to conferring an ICAM-2-mediated non-metastatic phenotype in NB cells.
Insights
Intercellular adhesion molecule-2 (ICAM-2) interaction with α-actinin is critical for suppressing neuroblastoma metastasis. Mutating this binding site reduced ICAM-2
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Metastatic disease is a primary driver of cancer mortality.
- Intercellular adhesion molecule-2 (ICAM-2) was recently found to suppress metastasis in neuroblastoma (NB) cells.
- The mechanism by which ICAM-2 regulates metastasis is not fully understood.
Purpose of the Study:
- To investigate the role of α-actinin binding to ICAM-2 in regulating NB cell phenotype.
- To determine if the interaction between ICAM-2 and α-actinin is essential for ICAM-2's anti-metastatic effects.
Main Methods:
- In silico analysis to predict ICAM-2 and α-actinin interaction.
- Generation of ICAM-2 variants with mutated α-actinin-binding domains.
- In vitro assays assessing cell adhesion, migration, and anchorage-independent growth.
- In vivo studies evaluating tumor formation and dissemination.
Main Results:
- ICAM-2 variants with altered α-actinin binding inhibited NB cell adhesion, migration, and in vitro growth, similar to wild-type ICAM-2.
- However, ICAM-2 variants failed to completely suppress the development of disseminated NB tumors in vivo.
- Cellular characteristics differed between ICAM-2 WT, ICAM-2 variants, and cells lacking ICAM-2.
Conclusions:
- The interaction between ICAM-2 and α-actinin is crucial for mediating the non-metastatic phenotype in neuroblastoma.
- Both α-actinin-dependent and independent mechanisms contribute to ICAM-2's function in metastasis.
- Targeting the ICAM-2/α-actinin interaction may offer novel therapeutic strategies against metastatic neuroblastoma.
More Related Videos
Related Concept Videos
Immunoglobulin-like Cell Adhesion Molecules
Ig-CAMs exhibit either homophilic binding (to other Ig-CAMs) or heterophilic binding (to other ligands such as integrins). While most Ig-CAMs...
Cancer Cell Migration through Invadopodia

