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Updated: Jun 12, 2025

Isolation, Enrichment, and Maintenance of Medulloblastoma Stem Cells
Published on: September 1, 2010
PP2A activation overcomes leptomeningeal dissemination in group 3 medulloblastoma
Nazia Nazam1, Michael H Erwin1, Janet R Julson1
1Division of Pediatric Surgery, Department of Surgery, University of Alabama at Birmingham, Birmingham, Alabama, USA.
Abstract:
Leptomeningeal dissemination (LMD) is the primary cause of treatment failure in children with group 3 medulloblastoma (MB). Building on our previous work on protein phosphatase 2A (PP2A) activation in MB, here we present preclinical and molecular data on the effects of two novel classes of PP2A activators on disease processes of LMD in group 3 MB. The PP2A activators used in this study are ATUX-6156 and ATUX-6954 (diarylmethylcycloamine sulfonylureas), and ATUX-1215 and ATUX-5800 (diarylmethyl-4-aminotetrahydropyran-sulfonamides). Treatment with these compounds led to suppression of the endogenous PP2A inhibitor, cancerous inhibitor of PP2A (CIP2A), enhanced phosphatase activity (10-60%), and reduced MB viability, migration, and invasion, prerequisites for MB cells to access the cerebrospinal fluid, affecting the initiation stage of LMD. PP2A activator treatment of MB cells led to apoptosis mediated via caspase 9/PARP signaling due to decreased phosphorylation of Bad, impeding the dispersal stage of LMD. Cell proliferation and LMD-driving cellular traits and molecules pertinent to the third stage, colonization, were also affected. Treatment with ATUX-1215 or ATUX-5800 prevented LMD in an intraventricular murine model of MB, possibly mediated by disruption of the CCL2-CCR2 axis by altered NF-kB phosphorylation via disrupted AKT signaling. The present investigation offers proof-of-principle data for PP2A-based reactivation therapy for Group 3 MB and provides the first indications that PP2A reactivation may challenge the current paradigm in targeting the 3-stage process of MB LMD. Further investigations of PP2A activators are warranted as these compounds may prove beneficial as therapeutics for MB.
Insights
Novel protein phosphatase 2A (PP2A) activators suppressed cancerous inhibitor of PP2A (CIP2A) and reduced medulloblastoma (MB) spread. These compounds prevented leptomeningeal dissemination (LMD) in a mouse model, offering new therapeutic potential for Group 3 MB.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Leptomeningeal dissemination (LMD) is a major cause of treatment failure in pediatric Group 3 medulloblastoma (MB).
- Protein phosphatase 2A (PP2A) activation is a potential therapeutic strategy for MB.
- Cancerous inhibitor of PP2A (CIP2A) is an endogenous inhibitor of PP2A activity.
Purpose of the Study:
- To evaluate the efficacy of novel PP2A activators against LMD in Group 3 MB.
- To investigate the molecular mechanisms underlying the anti-LMD effects of PP2A activators.
Main Methods:
- Preclinical evaluation of diarylmethylcycloamine sulfonylureas (ATUX-6156, ATUX-6954) and diarylmethyl-4-aminotetrahydropyran-sulfonamides (ATUX-1215, ATUX-5800) in Group 3 MB models.
- Assessment of PP2A activity, CIP2A suppression, MB cell viability, migration, invasion, and apoptosis.
- Intraventricular murine model of MB to assess LMD prevention and analyze signaling pathways (CCL2-CCR2, NF-kB, AKT).
Main Results:
- PP2A activators suppressed CIP2A, enhanced PP2A activity (10-60%), and reduced MB cell viability, migration, and invasion.
- Treatment induced apoptosis via caspase 9/PARP signaling by decreasing Bad phosphorylation, impacting MB cell dispersal.
- ATUX-1215 and ATUX-5800 prevented LMD in a murine model, potentially through disruption of the CCL2-CCR2 axis via altered NF-kB and AKT signaling.
Conclusions:
- Novel PP2A activators demonstrate proof-of-principle for treating Group 3 MB LMD.
- PP2A reactivation presents a potential paradigm shift in targeting the multi-stage process of MB LMD.
- Further investigation of these PP2A activators is warranted for their therapeutic potential in MB.
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