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Biology subjects

Purzner, T.

Publications and source records attributed to Purzner, T..

2 recordsLinked to original sources

Dexamethasone-Induced p57-Mediated Quiescence Drives Chemotherapy Resistance in Sonic Hedgehog Medulloblastoma

Medulloblastoma (MB), the most common malignant pediatric brain tumor, remains difficult to cure upon relapse, with only 12.4% of patients surviving five years post-recurrence. While specific quiescent tumor cell populations are known to contribute to treatment-resistance, the molecular mechanisms that maintain quiescence remain poorly defined. Here, we identify the cell cycle inhibitor p57 as a regulator of quiescence and chemotherapy resistance in Sonic Hedgehog (SHH) MB. Nuclear p57 was enriched in Sox2+ and Nestin+ stem-like MB cells compared to proliferative Atoh1+ cells. Inducing p57 expression in SHH MB cells led to a six-fold increase in G0-phase cells and conferred resistance to the frontline chemotherapeutic vincristine. Clinically, dexamethasone is a glucocorticoid given to nearly all MB patients to manage cerebral edema and is administered with wide variability in timing and dosing. We show that dexamethasone significantly increased nuclear p57 levels and expanded the G0 population in both Ptch1+/- and Ptch1+/-;Trp53-/- SHH MB mouse models. Pre-treatment with dexamethasone reduced vincristine sensitivity in SHH MB cells. Together, our findings reveal a clinically relevant and previously unrecognized mechanism of treatment resistance, whereby dexamethasone, despite its benefits in managing edema, may inadvertently contribute to tumor persistence or recurrence by driving a quiescent, drug-resistant state. Addressing the lack of standardization in steroid use or targeting p57 may improve treatment response and reduce recurrence in patients diagnosed with SHH MB.

cancer biology↗

Ezh2 Delays Activation of Differentiation Genes During Normal Cerebellar Granule Neuron Development and in Medulloblastoma

Medulloblastoma (MB) is the most common malignant brain tumour in children. The Sonic Hedgehog (SHH)-medulloblastoma subtype arises from the cerebellar granule neuron lineage. Terminally differentiated neurons are incapable of undergoing further cell division, so an effective treatment for this tumour could be to force neuronal differentiation. Differentiation therapy provides a potential alternative for patients with medulloblastoma who harbor mutations that impair cell death pathways (TP53), which is associated a with high mortality. To this end, our goal was to explore epigenetic regulation of cerebellar granule neuron differentiation in medulloblastoma cells. Key regulators were discovered using chromatin immunoprecipitation with high-throughput sequencing. DNA-bound protein and chromatin protein modifications were investigated across all genes. We discovered that Ezh2-mediated tri-methylation of the H3 histone (H3K27me3), occurred on more than half of the 787 genes whose transcription normally increases as granule neurons terminally differentiate. Conditional knockout of Ezh2 led to early initiation of differentiation in granule neuron precursors (GNPs), but only after cell cycle exit had occurred. Similarly, in MB cells, neuronal differentiation could be induced by preventing H3K27me3 modifications using an Ezh2 inhibitor (UNC1999), but only when UNC1999 was combined with forced cell cycle exit driven by a CDK4/6 inhibitor (Palbociclib). Ezh2 emerges as a powerful restraint upon post-mitotic differentiation during normal GNP development and combination of Ezh2 inhibition with cell cycle exit leads to MB cell differentiation.

cancer biology↗