Histone 3.3 hotspot mutations in conventional osteosarcomas: a comprehensive clinical and molecular characterization of six H3F3A mutated cases
CLINICAL SARCOMA RESEARCH
Authors: Koelsche, Christian; Schrimpf, Daniel; Tharun, Lars; Roth, Eva; Sturm, Dominik; Jones, David T. W.; Renker, Eva-Kristin; Sill, Martin; Baude, Annika; Sahm, Felix; Capper, David; Bewerunge-Hudler, Melanie; Hartmann, Wolfgang; Kulozik, Andreas E.; Petersen, Iver; Flucke, Uta; Schreuder, Hendrik W. B.; Buettner, Reinhard; Weber, Marc-Andre; Schirmacher, Peter; Plass, Christoph; Pfister, Stefan M.; von Deimling, Andreas; Mechtersheimer, Gunhild
Abstract
Background: Histone 3.3 (H3.3) hotspot mutations in bone tumors occur in the vast majority of giant cell tumors of bone (GCTBs; 96%), chondroblastomas (95%) and in a few cases of osteosarcomas. However, clinical presentation, histopathological features, and additional molecular characteristics of H3.3 mutant osteosarcomas are largely unknown. Methods: In this multicentre, retrospective study, a total of 106 conventional high-grade osteosarcomas, across all age groups were re-examined for hotspot mutations in the H3.3 coding genes H3F3A and H3F3B. H3.3 mutant osteosarcomas were re-evaluated in a multidisciplinary manner and analyzed for genome-wide DNA-methylation patterns and DNA copy number aberrations alongside H3.3 wild-type osteosarcomas and H3F3A G34W/L mutant GCTBs. Results: Six osteosarcomas (6/106) carried H3F3A hotspot mutations. No mutations were found in H3F3B. All patients with H3F3A mutant osteosarcoma were older than 30 years with a median age of 65 years. Copy number aberrations that are commonly encountered in high-grade osteosarcomas also occurred in H3F3A mutant osteosarcomas. Unlike a single osteosarcoma with a H3F3A K27M mutation, the DNA methylation profiles of H3F3A G34W/R mutant osteosarcomas were clearly different from H3.3 wild-type osteosarcomas, but more closely related to GCTBs. The most differentially methylated promoters between H3F3A G34W/R mutant and H3.3 wild-type osteosarcomas were in KLLN/PTEN (p < 0.00005) and HIST1H2BB (p < 0.0005). Conclusions: H3.3 mutations in osteosarcomas may occur in H3F3A at mutational hotspots. They are overall rare, but become more frequent in osteosarcoma patients older than 30 years. Osteosarcomas carrying H3F3A G34W/R mutations are associated with epigenetic dysregulation of KLLN/PTEN and HIST1H2BB.
Adult IDH wild type astrocytomas biologically and clinically resolve into other tumor entities
ACTA NEUROPATHOLOGICA
Authors: Reuss, David E.; Kratz, Annekathrin; Sahm, Felix; Capper, David; Schrimpf, Daniel; Koelsche, Christian; Hovestadt, Volker; Bewerunge-Hudler, Melanie; Jones, David T. W.; Schittenhelm, Jens; Mittelbronn, Michel; Rushing, Elisabeth; Simon, Matthias; Westphal, Manfred; Unterberg, Andreas; Platten, Michael; Paulus, Werner; Reifenberger, Guido; Tonn, Joerg-Christian; Aldape, Kenneth; Pfister, Stefan M.; Korshunov, Andrey; Weller, Michael; Herold-Mende, Christel; Wick, Wolfgang; Brandner, Sebastian; von Deimling, Andreas
Abstract
IDH wild type (IDHwt) anaplastic astrocytomas WHO grade III (AA III) are associated with poor outcome. To address the possibilities of molecular subsets among astrocytoma or of diagnostic reclassification, we analyzed a series of 160 adult IDHwt tumors comprising 120 AA III and 40 diffuse astrocytomas WHO grade II (A II) for molecular hallmark alterations and established methylation and copy number profiles. Based on molecular profiles and hallmark alterations the tumors could be grouped into four major sets. 124/160 (78 %) tumors were diagnosed as the molecular equivalent of conventional glioblastoma (GBM), and 15/160 (9 %) as GBM-H3F3A mutated (GBM-H3). 13/160 (8 %) exhibited a distinct methylation profile that was most similar to GBM-H3-K27, however, lacked the H3F3A mutation. This group was enriched for tumors of infratentorial and midline localization and showed a trend towards a more favorable prognosis. All but one of the 120 IDHwt AA III could be assigned to these three groups. 7 tumors recruited from the 40 A II, comprised a variety of molecular signatures and all but one were reclassified into distinct WHO entities of lower grades. Interestingly, TERT mutations were exclusively restricted to the molecular GBM (78 %) and associated with poor clinical outcome. However, the GBM-H3 group lacking TERT mutations appeared to fare even worse. Our data demonstrate that most of the tumors diagnosed as IDHwt astrocytomas can be allocated to other tumor entities on a molecular basis. The diagnosis of IDHwt diffuse astrocytoma or anaplastic astrocytoma should be used with caution.