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Updated: May 3, 2026

Intracranial Orthotopic Allografting of Medulloblastoma Cells in Immunocompromised Mice
Published on: October 3, 2010
ASC deficiency suppresses proliferation and prevents medulloblastoma incidence
E R W Knight1, E Y Patel2, C A Flowers2
11] Neurobiology Curriculum, University of North Carolina-Chapel Hill, Chapel Hill, NC, USA [2] Neuroscience Center, University of North Carolina-Chapel Hill, Chapel Hill, NC, USA.
Abstract:
Apoptosis-associated speck-like protein containing a caspase recruitment domain (ASC) is silenced by promoter methylation in many types of tumors, yet ASC's role in most cancers remains unknown. Here, we show that ASC is highly expressed in a model of medulloblastoma, the most common malignant pediatric brain cancer; ASC is also expressed in human medulloblastomas. Importantly, while ASC deficiency did not affect normal cerebellar development, ASC knockout mice on the Smoothened (ND2:SmoA1) transgenic model of medulloblastoma exhibited a profound reduction in medulloblastoma incidence and a delayed tumor onset. A similar decrease in tumorigenesis with ASC deficiency was also seen in the hGFAP-Cre:SmoM2 mouse model of medulloblastoma. Interestingly, hyperproliferation of the external granule layer (EGL) was comparable at P20 in both wild-type and ASC-deficient SmoA1 mice. However, while the apoptosis and differentiation markers remained unchanged at this age, proliferation makers were decreased, and the EGL was reduced in thickness and area by P60. This reduction in proliferation with ASC deficiency was also seen in isolated SmoA1 cerebellar granule precursor cells in vitro, indicating that the effect of ASC deletion on proliferation was cell autonomous. Interestingly, ASC-deficient SmoA1 cerebella exhibited disrupted expression of genes in the transforming growth factor-β pathway and increased level of nuclear Smad3. Taken together, these results demonstrate an unexpected role for ASC in Sonic hedgehog-driven medulloblastoma tumorigenesis, thus identifying ASC as a promising novel target for antitumor therapy.
Insights
Apoptosis-associated speck-like protein (ASC) surprisingly promotes medulloblastoma, a pediatric brain cancer. Removing ASC significantly reduced tumor development in mouse models, suggesting ASC as a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Neuroscience
Background:
- Apoptosis-associated speck-like protein containing a caspase recruitment domain (ASC) is often silenced in tumors, but its function in cancer is largely unknown.
- ASC is notably expressed in medulloblastoma, the most common pediatric brain malignancy.
Purpose of the Study:
- To investigate the role of ASC in medulloblastoma development and tumorigenesis.
- To determine if ASC is a viable therapeutic target for medulloblastoma.
Main Methods:
- Utilized genetically engineered mouse models (ND2:SmoA1 and hGFAP-Cre:SmoM2) of medulloblastoma.
- Analyzed tumor incidence, onset, and cellular proliferation markers (e.g., EGL thickness) in ASC-deficient and wild-type mice.
- Performed in vitro studies using isolated SmoA1 cerebellar granule precursor cells.
- Examined gene expression related to the transforming growth factor-β pathway and Smad3 levels.
Main Results:
- ASC deficiency significantly reduced medulloblastoma incidence and delayed tumor onset in mouse models.
- While normal cerebellar development was unaffected, ASC deficiency decreased proliferation in medulloblastoma precursor cells.
- ASC-deficient tumors showed disrupted transforming growth factor-β pathway gene expression and increased nuclear Smad3.
- The proliferative effects of ASC deficiency were cell-autonomous.
Conclusions:
- ASC plays an unexpected, pro-tumorigenic role in Sonic hedgehog-driven medulloblastoma.
- Targeting ASC presents a promising novel therapeutic strategy for medulloblastoma treatment.
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