Anaplastic pleomorphic xanthoastrocytoma associated with an H3G34 mutation: a case report with review of literature
BRAIN TUMOR PATHOLOGY
Authors: Sasaki, Shoh; Tomomasa, Ran; Nobusawa, Sumihito; Hirato, Junko; Uchiyama, Tomoko; Boku, Eishu; Miyasaka, Toshiteru; Hirose, Takanori; Ohbayashi, Chiho
Abstract
Here, we report a rare case of anaplastic pleomorphic xanthoastrocytoma (PXA) associated with an H3G34 mutation. A 12-year-old male presented with loss of appetite, vomiting, headache, and a generalized seizure, and CT revealed a 9.0 cm left frontal lobe mass with some septal walls and a localized high-density area suggestive of hemorrhage or calcification, causing severe midline shift. He emergently underwent subtotal resection and the tumor was morphologically diagnosed as anaplastic PXA. DNA sequencing identified an H3F3A G34R mutation and a TP53 R273H mutation, and immunohistochemically, ATRX nuclear expression was lost. In CNS tumors, H3G34 mutations are essentially detected in glioblastoma (GBM) or central nervous system primitive neuroectodermal tumors. Those tumors most likely comprise a single biological entity (high-grade glioma with H3G34 mutation) because of no significant difference in molecular profiling and prognosis between GBM and PNET morphologies. To our knowledge, our present case is the first one of anaplastic PXA associated with an H3G34 mutation, and whether it biologically corresponds to "high-grade glioma with H3G34 mutation" needs further studies.
DECIPHER pooled shRNA library screen identifies PP2A and FGFR signaling as potential therapeutic targets for diffuse intrinsic pontine gliomas
NEURO-ONCOLOGY
Authors: Schramm, Kathrin; Iskar, Murat; Statz, Britta; Jaeger, Natalie; Haag, Daniel; Slabicki, Mikolaj; Pfister, Stefan M.; Zapatka, Marc; Gronych, Jan; Jones, David T. W.; Lichter, Peter
Abstract
Background Diffuse intrinsic pontine gliomas (DIPGs) are highly aggressive pediatric brain tumors that are characterized by a recurrent mutation (K27M) within the histone H3 encoding genes H3F3A and HIST1H3A/B/C. These mutations have been shown to induce a global reduction in the repressive histone modification H3K27me3, which together with widespread changes in DNA methylation patterns results in an extensive transcriptional reprogramming hampering the identification of single therapeutic targets based on a molecular rationale. Methods We applied a large-scale gene knockdown approach using a pooled short hairpin (sh)RNA library in combination with next-generation sequencing in order to identify DIPG-specific vulnerabilities. The therapeutic potential of specific inhibitors of candidate targets was validated in a secondary drug screen. Results We identified fibroblast growth factor receptor (FGFR) signaling and the serine/threonine protein phosphatase 2A (PP2A) as top depleted hits in patient-derived DIPG cell cultures and validated their lethal potential by FGF ligand depletion and genetic knockdown of the PP2A structural subunit PPP2R1A. Further, pharmacological inhibition of FGFR and PP2A signaling through ponatinib and LB-100 treatment, respectively, exhibited strong tumor-specific anti-proliferative and apoptotic activity in cultured DIPG cells. Conclusions Our findings suggest FGFR and PP2A signaling as potential new therapeutic targets for the treatment of DIPGs.