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Junctional adhesion molecule-A is overexpressed in advanced multiple myeloma and determines response to oncolytic
Kevin R Kelly1, Claudia M Espitia2, Weiguo Zhao2
1Anne Nohl Division of Hematology and Center for The Study of Blood Diseases, University of Southern California Keck School of Medicine, Los Angeles, CA, USA.
Abstract:
Despite the development of several new agents for multiple myeloma (MM) therapy over the last decade, drug resistance continues to be a significant problem. Patients with relapsed/refractory disease have high mortality rates and desperately need new precision approaches that directly target specific molecular features that are prevalent in the refractory setting. Reolysin is a proprietary formulation of reovirus for cancer therapy that has demonstrated efficacy in multiple clinical trials. Its selective effects against solid tumors have been largely attributed to RAS-mediated control of reovirus replication. However, the mechanisms regulating its preferential anti-neoplastic effects in MM and other hematological malignancies have not been rigorously studied. Here we report that the reovirus receptor, junctional adhesion molecule-A (JAM-A) is highly expressed in primary cells from patients with MM and the majority of MM cell lines compared to normal controls. A series of experiments demonstrated that JAM-A expression, rather than RAS, was required for Reolysin-induced cell death in MM models. Notably, analysis of paired primary MM specimens revealed that JAM-A expression was significantly increased at relapse compared to diagnosis. Two different models of acquired resistance to bortezomib also displayed both higher JAM-A expression and elevated sensitivity to Reolysin compared to parental cells, suggesting that Reolysin may be an effective agent for patients with relapsed/refractory disease due to their high JAM-A levels. Taken together, these findings support further investigation of Reolysin for the treatment of patients with relapsed/refractory MM and of JAM-A as a predictive biomarker for sensitivity to Reolysin-induced cell death.
Insights
Reolysin shows promise for treating relapsed/refractory multiple myeloma (MM) by targeting junctional adhesion molecule-A (JAM-A). Increased JAM-A expression in relapsed MM suggests Reolysin could be a vital new precision therapy.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Drug resistance remains a significant challenge in multiple myeloma (MM) therapy, necessitating novel precision approaches.
- Reolysin, a reovirus-based cancer therapy, has shown efficacy, but its mechanism in hematological malignancies is unclear.
- Junctional adhesion molecule-A (JAM-A) is identified as a potential key factor in Reolysin's anti-cancer effects.
Purpose of the Study:
- To investigate the role of JAM-A in Reolysin's anti-myeloma activity.
- To determine if JAM-A expression correlates with MM progression and drug resistance.
- To evaluate Reolysin as a potential therapy for relapsed/refractory multiple myeloma.
Main Methods:
- Assessed JAM-A expression in MM patient samples and cell lines.
- Conducted experiments to determine JAM-A's requirement for Reolysin-induced cell death.
- Analyzed JAM-A expression in paired diagnostic and relapsed MM specimens.
- Compared Reolysin sensitivity in bortezomib-resistant MM models with varying JAM-A levels.
Main Results:
- Junctional adhesion molecule-A (JAM-A) is highly expressed in multiple myeloma (MM) cells compared to normal controls.
- JAM-A expression, not RAS, was essential for Reolysin-mediated cell death in MM models.
- JAM-A levels were significantly elevated in relapsed MM compared to diagnostic samples.
- Acquired resistance models for bortezomib showed increased JAM-A expression and heightened sensitivity to Reolysin.
Conclusions:
- JAM-A is highly expressed in relapsed/refractory multiple myeloma (MM) and is crucial for Reolysin's anti-myeloma effects.
- Reolysin demonstrates potential as a precision therapy for relapsed/refractory MM.
- JAM-A serves as a promising predictive biomarker for Reolysin sensitivity in MM patients.
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