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1.
Mol Cell ; 81(6): 1276-1291.e9, 2021 03 18.
Article in English | MEDLINE | ID: mdl-33539787

ABSTRACT

Aberrant cell proliferation is a hallmark of cancer, including glioblastoma (GBM). Here we report that protein arginine methyltransferase (PRMT) 6 activity is required for the proliferation, stem-like properties, and tumorigenicity of glioblastoma stem cells (GSCs), a subpopulation in GBM critical for malignancy. We identified a casein kinase 2 (CK2)-PRMT6-regulator of chromatin condensation 1 (RCC1) signaling axis whose activity is an important contributor to the stem-like properties and tumor biology of GSCs. CK2 phosphorylates and stabilizes PRMT6 through deubiquitylation, which promotes PRMT6 methylation of RCC1, which in turn is required for RCC1 association with chromatin and activation of RAN. Disruption of this pathway results in defects in mitosis. EPZ020411, a specific small-molecule inhibitor for PRMT6, suppresses RCC1 arginine methylation and improves the cytotoxic activity of radiotherapy against GSC brain tumor xenografts. This study identifies a CK2α-PRMT6-RCC1 signaling axis that can be therapeutically targeted in the treatment of GBM.


Subject(s)
Brain Neoplasms , Carcinogenesis , Cell Cycle Proteins , Glioblastoma , Guanine Nucleotide Exchange Factors , Mitosis/radiation effects , Neoplasm Proteins , Nuclear Proteins , Protein-Arginine N-Methyltransferases , Animals , Brain Neoplasms/genetics , Brain Neoplasms/metabolism , Brain Neoplasms/radiotherapy , Carcinogenesis/genetics , Carcinogenesis/metabolism , Carcinogenesis/radiation effects , Casein Kinase II/genetics , Casein Kinase II/metabolism , Cell Cycle Proteins/genetics , Cell Cycle Proteins/metabolism , Cell Line, Tumor , Female , Glioblastoma/genetics , Glioblastoma/metabolism , Glioblastoma/radiotherapy , Guanine Nucleotide Exchange Factors/genetics , Guanine Nucleotide Exchange Factors/metabolism , HEK293 Cells , Humans , Male , Mice , Mitosis/genetics , Neoplasm Proteins/genetics , Neoplasm Proteins/metabolism , Nuclear Proteins/genetics , Nuclear Proteins/metabolism , Protein-Arginine N-Methyltransferases/genetics , Protein-Arginine N-Methyltransferases/metabolism , Signal Transduction/genetics , Signal Transduction/radiation effects , Xenograft Model Antitumor Assays
2.
Cell ; 155(2): 462-77, 2013 Oct 10.
Article in English | MEDLINE | ID: mdl-24120142

ABSTRACT

We describe the landscape of somatic genomic alterations based on multidimensional and comprehensive characterization of more than 500 glioblastoma tumors (GBMs). We identify several novel mutated genes as well as complex rearrangements of signature receptors, including EGFR and PDGFRA. TERT promoter mutations are shown to correlate with elevated mRNA expression, supporting a role in telomerase reactivation. Correlative analyses confirm that the survival advantage of the proneural subtype is conferred by the G-CIMP phenotype, and MGMT DNA methylation may be a predictive biomarker for treatment response only in classical subtype GBM. Integrative analysis of genomic and proteomic profiles challenges the notion of therapeutic inhibition of a pathway as an alternative to inhibition of the target itself. These data will facilitate the discovery of therapeutic and diagnostic target candidates, the validation of research and clinical observations and the generation of unanticipated hypotheses that can advance our molecular understanding of this lethal cancer.


Subject(s)
Brain Neoplasms/genetics , Glioblastoma/genetics , Brain Neoplasms/metabolism , Female , Gene Expression Profiling , Gene Regulatory Networks , Glioblastoma/metabolism , Humans , Male , Mutation , Proteome/analysis , Signal Transduction
3.
Proc Natl Acad Sci U S A ; 120(20): e2210991120, 2023 05 16.
Article in English | MEDLINE | ID: mdl-37155843

ABSTRACT

In 2021, the World Health Organization reclassified glioblastoma, the most common form of adult brain cancer, into isocitrate dehydrogenase (IDH)-wild-type glioblastomas and grade IV IDH mutant (G4 IDHm) astrocytomas. For both tumor types, intratumoral heterogeneity is a key contributor to therapeutic failure. To better define this heterogeneity, genome-wide chromatin accessibility and transcription profiles of clinical samples of glioblastomas and G4 IDHm astrocytomas were analyzed at single-cell resolution. These profiles afforded resolution of intratumoral genetic heterogeneity, including delineation of cell-to-cell variations in distinct cell states, focal gene amplifications, as well as extrachromosomal circular DNAs. Despite differences in IDH mutation status and significant intratumoral heterogeneity, the profiled tumor cells shared a common chromatin structure defined by open regions enriched for nuclear factor 1 transcription factors (NFIA and NFIB). Silencing of NFIA or NFIB suppressed in vitro and in vivo growths of patient-derived glioblastomas and G4 IDHm astrocytoma models. These findings suggest that despite distinct genotypes and cell states, glioblastoma/G4 astrocytoma cells share dependency on core transcriptional programs, yielding an attractive platform for addressing therapeutic challenges associated with intratumoral heterogeneity.


Subject(s)
Astrocytoma , Brain Neoplasms , Glioblastoma , Adult , Humans , Glioblastoma/genetics , Glioblastoma/pathology , Chromatin/genetics , Transcriptome , Astrocytoma/genetics , Astrocytoma/pathology , Brain Neoplasms/genetics , Brain Neoplasms/pathology , Mutation , Isocitrate Dehydrogenase/genetics , Isocitrate Dehydrogenase/metabolism
4.
Nature ; 565(7741): 654-658, 2019 01.
Article in English | MEDLINE | ID: mdl-30675060

ABSTRACT

Diffuse gliomas are the most common malignant brain tumours in adults and include glioblastomas and World Health Organization (WHO) grade II and grade III tumours (sometimes referred to as lower-grade gliomas). Genetic tumour profiling is used to classify disease and guide therapy1,2, but involves brain surgery for tissue collection; repeated tumour biopsies may be necessary for accurate genotyping over the course of the disease3-10. While the detection of circulating tumour DNA (ctDNA) in the blood of patients with primary brain tumours remains challenging11,12, sequencing of ctDNA from the cerebrospinal fluid (CSF) may provide an alternative way to genotype gliomas with lower morbidity and cost13,14. We therefore evaluated the representation of the glioma genome in CSF from 85 patients with gliomas who underwent a lumbar puncture because they showed neurological signs or symptoms. Here we show that tumour-derived DNA was detected in CSF from 42 out of 85 patients (49.4%) and was associated with disease burden and adverse outcome. The genomic landscape of glioma in the CSF included a broad spectrum of genetic alterations and closely resembled the genomes of tumour biopsies. Alterations that occur early during tumorigenesis, such as co-deletion of chromosome arms 1p and 19q (1p/19q codeletion) and mutations in the metabolic genes isocitrate dehydrogenase 1 (IDH1) or IDH21,2, were shared in all matched ctDNA-positive CSF-tumour pairs, whereas growth factor receptor signalling pathways showed considerable evolution. The ability to monitor the evolution of the glioma genome through a minimally invasive technique could advance the clinical development and use of genotype-directed therapies for glioma, one of the most aggressive human cancers.


Subject(s)
Evolution, Molecular , Glioma/cerebrospinal fluid , Glioma/genetics , Liquid Biopsy , Mutation , Genes, Neoplasm/genetics , Genome, Human/genetics , Genomics , Glioblastoma/cerebrospinal fluid , Glioblastoma/genetics , Glioblastoma/pathology , Glioma/pathology , Humans , Neoplasm Grading
5.
J Neurooncol ; 153(3): 507-518, 2021 Jul.
Article in English | MEDLINE | ID: mdl-34146223

ABSTRACT

OBJECTIVE: Radiation therapy is a cornerstone of brain metastasis (BrM) management but carries the risk of radiation necrosis (RN), which can require resection for palliation or diagnosis. We sought to determine the relationship between extent of resection (EOR) of pathologically-confirmed RN and postoperative radiographic and symptomatic outcomes. METHODS: A single-center retrospective review was performed at an NCI-designated Comprehensive Cancer Center to identify all surgically-resected, previously-irradiated necrotic BrM without admixed recurrent malignancy from 2003 to 2018. Clinical, pathologic and radiographic parameters were collected. Volumetric analysis determined EOR and longitudinally evaluated perilesional T2-FLAIR signal preoperatively, postoperatively, and at 3-, 6-, 12-, and 24-months postoperatively when available. Rates of time to 50% T2-FLAIR reduction was calculated using cumulative incidence in the competing risks setting with last follow-up and death as competing events. The Spearman method was used to calculate correlation coefficients, and continuous variables for T2-FLAIR signal change, including EOR, were compared across groups. RESULTS: Forty-six patients were included. Most underwent prior stereotactic radiosurgery with or without whole-brain irradiation (N = 42, 91%). Twenty-seven operations resulted in gross-total resection (59%; GTR). For the full cohort, T2-FLAIR edema decreased by a mean of 78% by 6 months postoperatively that was durable to last follow-up (p < 0.05). EOR correlated with edema reduction at last follow-up, with significantly greater T2-FLAIR reduction with GTR versus subtotal resection (p < 0.05). Among surviving patients, a significant proportion were able to decrease their steroid use: steroid-dependency decreased from 54% preoperatively to 15% at 12 months postoperatively (p = 0.001). CONCLUSIONS: RN resection conferred both durable T2-FLAIR reduction, which correlated with EOR; and reduced steroid dependency.


Subject(s)
Brain Neoplasms , Radiation Injuries , Radiosurgery , Brain Neoplasms/diagnostic imaging , Brain Neoplasms/radiotherapy , Brain Neoplasms/secondary , Brain Neoplasms/surgery , Edema , Humans , Necrosis/diagnostic imaging , Necrosis/etiology , Neoplasm Recurrence, Local/surgery , Radiation Injuries/diagnostic imaging , Radiation Injuries/etiology , Radiosurgery/adverse effects , Retrospective Studies , Treatment Outcome
6.
J Neurooncol ; 154(3): 301-313, 2021 Sep.
Article in English | MEDLINE | ID: mdl-34406564

ABSTRACT

BACKGROUND: Leptomeningeal metastasis (LM) occurs in 3-5% of patients with solid metastatic tumors and often portends a severe prognosis including symptomatic hydrocephalus and intracranial hypertension. Cerebrospinal fluid (CSF) shunting can provide symptomatic relief in this patient subset; however, few studies have examined the role of shunting in the palliation, prognosis and overall oncologic care of these patients. OBJECTIVE: To identify and evaluate risk factors associated with prognosis after CSF diversion and assess surgical, symptomatic and oncologic outcomes in this population. METHODS: A retrospective study was conducted on patients with solid-malignancy LM treated with a shunt at a NCI-designated Comprehensive Cancer Center between 2010 and 2019. RESULTS: One hundred and ninety patients with metastatic LM underwent CSF diversion. Overall survival was 4.14 months from LM diagnosis (95% CI: 3.29-4.70) and 2.43 months (95% CI: 2.01-3.09) from shunting. Karnofsky performance status (KPS) at time of shunting and brain metastases (BrM) number at LM diagnosis demonstrated significant associations with survival (HR = 0.66; 95% CI [0.51-0.86], p = 0.002; HR = 1.40; 95% CI [1.01-1.93] per 10 BrM, p = 0.04, respectively). Eighty-three percent of patients experienced symptomatic relief, and 79% were discharged home or to rehabilitation facilities post-shunting. Post-shunt, 56% of patients received additional systemic therapy or started or completed WBRT. Complications included infection (5%), symptomatic subdural hygroma/hematoma (6.3%), and shunt externalization/removal/repair (8%). Abdominal seeding was not identified. CONCLUSIONS: CSF diversion for LM with hydrocephalus and intracranial hypertension secondary to metastasis can achieve symptomatic relief, hospital discharge, and return to further oncologic therapy, with a complication profile unique to this pathophysiology. However, decision-making in this population must incorporate end-of-life goals of care given limited prognosis.


Subject(s)
Brain Neoplasms , Hydrocephalus , Meningeal Carcinomatosis , Humans , Intracranial Hypertension , Meningeal Carcinomatosis/therapy , Retrospective Studies
7.
J Neurooncol ; 155(3): 277-286, 2021 Dec.
Article in English | MEDLINE | ID: mdl-34655373

ABSTRACT

PURPOSE: The efficacy of salvage resection (SR) of recurrent brain metastases (rBrM) following stereotactic radiosurgery (SRS) is undefined. We sought to describe local recurrence (LR) and radiation necrosis (RN) rates in patients undergoing SR, with or without adjuvant post-salvage radiation therapy (PSRT). METHODS: A retrospective cohort study evaluated patients undergoing SR of post-SRS rBrM between 3/2003-2/2020 at an NCI-designated cancer center. Cases with histologically-viable malignancy were stratified by receipt of adjuvant PSRT within 60 days of SR. Clinical outcomes were described using cumulative incidences in the clustered competing-risks setting, competing risks regression, and Kaplan-Meier methodology. RESULTS: One-hundred fifty-five rBrM in 135 patients were evaluated. The overall rate of LR was 40.2% (95% CI 34.3-47.2%) at 12 months. Thirty-nine (25.2%) rBrM treated with SR + PSRT trended towards lower 12-month LR versus SR alone [28.8% (95% CI 17.0-48.8%) versus 43.9% (95% CI 36.2-53.4%), p = .07 by multivariate analysis]. SR as re-operation (p = .03) and subtotal resection (p = .01) were independently associated with higher rates of LR. On univariate analysis, tumor size (p = .48), primary malignancy (p = .35), and PSRT technique (p = .43) bore no influence on LR. SR + PSRT was associated with an increased risk of radiographic RN at 12 months versus SR alone [13.4% (95% CI 5.5-32.7%) versus 3.5% (95% CI 1.5-8.0%), p = .02], though the percentage with symptomatic RN remained low (5.1% versus 0.9%, respectively). Median overall survival from SR was 13.4 months (95% CI 10.5-17.7). CONCLUSION: In this largest-known series evaluating SR outcomes in histopathologically-confirmed rBrM, we identify a significant LR risk that may be reduced with adjuvant PSRT and with minimal symptomatic RN. Prospective analysis is warranted.


Subject(s)
Brain Neoplasms , Radiation Injuries , Radiosurgery , Re-Irradiation , Brain Neoplasms/radiotherapy , Brain Neoplasms/secondary , Brain Neoplasms/surgery , Humans , Necrosis/etiology , Neoplasm Recurrence, Local/radiotherapy , Neoplasm Recurrence, Local/surgery , Radiosurgery/adverse effects , Re-Irradiation/adverse effects , Retrospective Studies , Treatment Outcome
8.
Genes Dev ; 27(13): 1462-72, 2013 Jul 01.
Article in English | MEDLINE | ID: mdl-23796897

ABSTRACT

With the advent of high-throughput sequencing technologies, much progress has been made in the identification of somatic structural rearrangements in cancer genomes. However, characterization of the complex alterations and their associated mechanisms remains inadequate. Here, we report a comprehensive analysis of whole-genome sequencing and DNA copy number data sets from The Cancer Genome Atlas to relate chromosomal alterations to imbalances in DNA dosage and describe the landscape of intragenic breakpoints in glioblastoma multiforme (GBM). Gene length, guanine-cytosine (GC) content, and local presence of a copy number alteration were closely associated with breakpoint susceptibility. A dense pattern of repeated focal amplifications involving the murine double minute 2 (MDM2)/cyclin-dependent kinase 4 (CDK4) oncogenes and associated with poor survival was identified in 5% of GBMs. Gene fusions and rearrangements were detected concomitant within the breakpoint-enriched region. At the gene level, we noted recurrent breakpoints in genes such as apoptosis regulator FAF1. Structural alterations of the FAF1 gene disrupted expression and led to protein depletion. Restoration of the FAF1 protein in glioma cell lines significantly increased the FAS-mediated apoptosis response. Our study uncovered a previously underappreciated genomic mechanism of gene deregulation that can confer growth advantages on tumor cells and may generate cancer-specific vulnerabilities in subsets of GBM.


Subject(s)
Chromosome Breakage , Glioblastoma/genetics , Glioblastoma/mortality , Adaptor Proteins, Signal Transducing , Animals , Apoptosis Regulatory Proteins , Carrier Proteins/genetics , Carrier Proteins/metabolism , Cyclin-Dependent Kinase 4/genetics , Cyclin-Dependent Kinase 4/metabolism , DNA Copy Number Variations/genetics , Gene Fusion/genetics , Gene Rearrangement/genetics , Genomic Instability/genetics , Glioblastoma/pathology , Intracellular Signaling Peptides and Proteins , Mice , Proto-Oncogene Proteins c-mdm2/genetics , Proto-Oncogene Proteins c-mdm2/metabolism , Survival Analysis
9.
Eur J Nucl Med Mol Imaging ; 47(6): 1446-1457, 2020 06.
Article in English | MEDLINE | ID: mdl-31865407

ABSTRACT

PURPOSE: Radiographic changes of brain metastases after stereotactic radiosurgery (SRS) can signify tumor recurrence and/or radiation necrosis (RN); however, standard imaging modalities cannot easily distinguish between these two entities. We investigated whether 18F-Fluorocholine uptake in surgical samples of the resected lesions correlates with pathologic evidence of recurrent tumor and PET imaging. METHODS: About 14 patients previously treated with SRS that developed radiographic changes were included. All patients underwent a preoperative 40-min dynamic PET/CT concurrent with 392 ± 11 MBq bolus injection of 18F-Fluorocholine. 18F-Fluorocholine pharmacokinetics were evaluated by standardized uptake value (SUV), graphical analysis (Patlak plot; KiP) and an irreversible two-compartment model (K1, k2, k3, and Ki). 12 out of 14 patients were administered an additional 72 ± 14 MBq injection of 18F-Fluorocholine 95 ± 26 minutes prior to surgical resection. About 113 resected samples from 12 patients were blindly reviewed by a neuropathologist to assess the viable tumor and necrotic content, microvascular proliferation, reactive gliosis, and mono- and polymorphonuclear inflammatory infiltrates. Correlation between these metrics 18F-Fluorocholine SUV was investigated with a linear mixed model. Comparison of survival distributions of two groups of patients (population median split of PET SUVmax) was performed with the log-rank test. RESULTS: Exactly 10 out of 12 patients for which surgical samples were acquired exhibited pathologic recurrence. Strong correlation was observed between SUVmax as measured from a surgically removed sample with highest uptake and by PET (Pearson's r = 0.66). Patients with 18F-Fluorocholine PET SUVmax > 6 experienced poor survival. Surgical samples with viable tumor had higher 18F-fluorocholine uptake (SUV) than those without tumor (4.5 ± 3.7 and 2.6 ± 3.0; p = 0.01). 18F-fluorocholine count data from surgical samples is driven not only by the percentage viable tumor but also by the degree of inflammation and reactive gliosis (p ≤ 0.02; multivariate regression). CONCLUSIONS: 18F-Fluorocholine accumulation is increased in viable tumor; however, inflammation and gliosis may also lead to elevated uptake. Higher 18F-Fluorocholine PET uptake portends worse prognosis. Kinetic analysis of dynamic 18F-Fluorocholine PET imaging supports the adequacy of the simpler static SUV metric.


Subject(s)
Brain Neoplasms , Radiosurgery , Brain Neoplasms/diagnostic imaging , Brain Neoplasms/surgery , Choline/analogs & derivatives , Humans , Kinetics , Neoplasm Recurrence, Local , Positron Emission Tomography Computed Tomography , Positron-Emission Tomography
10.
Pediatr Blood Cancer ; 65(4)2018 04.
Article in English | MEDLINE | ID: mdl-29286561

ABSTRACT

Fibrolamellar hepatocellular carcinoma (FLHCC) is a rare liver malignancy in adolescents and young adults. Surgery is the mainstay of therapy for primary and metastatic disease. Most patients relapse, with development of both local and distant metastases. Brain metastases from solid tumors are rare in the pediatric and young adult population. Here, we document three patients with brain metastases from FLHCC, confirmed by histology and molecular characterization of the chimeric fusion DNAJB1-PRKACA, each necessitating neurosurgical intervention. These observations highlight the ability of FLHCC to metastasize to the brain and suggest the need for surveillance neuroimaging for patients with advanced-stage disease.


Subject(s)
Brain Neoplasms , Carcinoma, Hepatocellular , Liver Neoplasms , Neuroimaging , Neurosurgical Procedures , Adolescent , Brain Neoplasms/diagnostic imaging , Brain Neoplasms/genetics , Brain Neoplasms/secondary , Brain Neoplasms/surgery , Carcinoma, Hepatocellular/diagnostic imaging , Carcinoma, Hepatocellular/genetics , Carcinoma, Hepatocellular/metabolism , Carcinoma, Hepatocellular/surgery , Cyclic AMP-Dependent Protein Kinase Catalytic Subunits/genetics , Cyclic AMP-Dependent Protein Kinase Catalytic Subunits/metabolism , Female , HSP40 Heat-Shock Proteins/genetics , HSP40 Heat-Shock Proteins/metabolism , Humans , Liver Neoplasms/diagnostic imaging , Liver Neoplasms/genetics , Liver Neoplasms/metabolism , Liver Neoplasms/surgery , Neoplasm Metastasis , Oncogene Proteins, Fusion/genetics , Oncogene Proteins, Fusion/metabolism
11.
Genes Dev ; 24(19): 2205-18, 2010 Oct 01.
Article in English | MEDLINE | ID: mdl-20889717

ABSTRACT

Gene rearrangement in the form of an intragenic deletion is the primary mechanism of oncogenic mutation of the epidermal growth factor receptor (EGFR) gene in gliomas. However, the incidence of platelet-derived growth factor receptor-α (PDGFRA) gene rearrangement in these tumors is unknown. We investigated the PDGFRA locus in PDGFRA-amplified gliomas and identified two rearrangements, including the first case of a gene fusion between kinase insert domain receptor (KDR) (VEGFRII) and the PDGFRA gene, and six cases of PDGFRA(Δ8, 9), an intragenic deletion rearrangement. The PDGFRA(Δ8, 9) mutant was common, being present in 40% of the glioblastoma multiformes (GBMs) with PDGFRA amplification. Tumors with these two types of PDGFRA rearrangement displayed histologic features of oligodendroglioma, and the gene products of both rearrangements showed constitutively elevated tyrosine kinase activity and transforming potential that was reversed by PDGFR blockade. These results suggest the possibility that these PDGFRA mutants behave as oncogenes in this subset of gliomas, and that the prevalence of such rearrangements may have been considerably underestimated.


Subject(s)
Gene Rearrangement , Glioblastoma/genetics , Receptor, Platelet-Derived Growth Factor alpha/genetics , Receptor, Platelet-Derived Growth Factor alpha/metabolism , Amino Acid Sequence , Base Sequence , Benzamides , Gene Dosage , Gene Fusion/genetics , Glioblastoma/pathology , Humans , Imatinib Mesylate , Mitogen-Activated Protein Kinases/metabolism , Molecular Sequence Data , Mutation/genetics , Oligodendroglioma/genetics , Oligodendroglioma/pathology , Phosphatidylinositol 3-Kinases/metabolism , Phosphorylation , Phthalazines/pharmacology , Piperazines/pharmacology , Protein Kinase Inhibitors/pharmacology , Protein-Tyrosine Kinases/genetics , Protein-Tyrosine Kinases/metabolism , Pyridines/pharmacology , Pyrimidines/pharmacology , Signal Transduction , Transformation, Genetic/drug effects
12.
Proc Natl Acad Sci U S A ; 111(22): 8149-54, 2014 Jun 03.
Article in English | MEDLINE | ID: mdl-24843164

ABSTRACT

PTPRD, which encodes the protein tyrosine phosphatase receptor-δ, is one of the most frequently inactivated genes across human cancers, including glioblastoma multiforme (GBM). PTPRD undergoes both deletion and mutation in cancers, with copy number loss comprising the primary mode of inactivation in GBM. However, it is unknown whether loss of PTPRD promotes tumorigenesis in vivo, and the mechanistic basis of PTPRD function in tumors is unclear. Here, using genomic analysis and a glioma mouse model, we demonstrate that loss of Ptprd accelerates tumor formation and define the oncogenic context in which Ptprd loss acts. Specifically, we show that in human GBMs, heterozygous loss of PTPRD is the predominant type of lesion and that loss of PTPRD and the CDKN2A/p16(INK4A) tumor suppressor frequently co-occur. Accordingly, heterozygous loss of Ptprd cooperates with p16 deletion to drive gliomagenesis in mice. Moreover, loss of the Ptprd phosphatase resulted in phospho-Stat3 accumulation and constitutive activation of Stat3-driven genetic programs. Surprisingly, the consequences of Ptprd loss are maximal in the heterozygous state, demonstrating a tight dependence on gene dosage. Ptprd loss did not increase cell proliferation but rather altered pathways governing the macrophage response. In total, we reveal that PTPRD is a bona fide tumor suppressor, pinpoint PTPRD loss as a cause of aberrant STAT3 activation in gliomas, and establish PTPRD loss, in the setting of CDKN2A/p16(INK4A) deletion, as a driver of glioma progression.


Subject(s)
Brain Neoplasms/metabolism , Glioblastoma/metabolism , Receptor-Like Protein Tyrosine Phosphatases, Class 2/metabolism , STAT3 Transcription Factor/metabolism , Animals , Brain Neoplasms/immunology , Brain Neoplasms/pathology , Carcinogenesis/genetics , Carcinogenesis/immunology , Carcinogenesis/metabolism , Cell Proliferation , Chickens , Cyclin-Dependent Kinase Inhibitor p16/genetics , Disease Models, Animal , Gene Expression Regulation, Neoplastic/physiology , Genes, Tumor Suppressor/physiology , Glioblastoma/immunology , Glioblastoma/pathology , Heterozygote , Humans , Mice , Mice, Knockout , Neoplasm Transplantation , Receptor-Like Protein Tyrosine Phosphatases, Class 2/genetics , Tumor Microenvironment/immunology
13.
EMBO J ; 30(19): 4084-97, 2011 Sep 13.
Article in English | MEDLINE | ID: mdl-21915099

ABSTRACT

In tumours, aberrant splicing generates variants that contribute to multiple aspects of tumour establishment, progression and maintenance. We show that in glioblastoma multiforme (GBM) specimens, death-domain adaptor protein Insuloma-Glucagonoma protein 20 (IG20) is consistently aberrantly spliced to generate an antagonist, anti-apoptotic isoform (MAP-kinase activating death domain protein, MADD), which effectively redirects TNF-α/TRAIL-induced death signalling to promote survival and proliferation instead of triggering apoptosis. Splicing factor hnRNPH, which is upregulated in gliomas, controls this splicing event and similarly mediates switching to a ligand-independent, constitutively active Recepteur d'Origine Nantais (RON) tyrosine kinase receptor variant that promotes migration and invasion. The increased cell death and the reduced invasiveness caused by hnRNPH ablation can be rescued by the targeted downregulation of IG20/MADD exon 16- or RON exon 11-containing variants, respectively, using isoform-specific knockdown or splicing redirection approaches. Thus, hnRNPH activity appears to be involved in the pathogenesis and progression of malignant gliomas as the centre of a splicing oncogenic switch, which might reflect reactivation of stem cell patterns and mediates multiple key aspects of aggressive tumour behaviour, including evasion from apoptosis and invasiveness.


Subject(s)
Brain Neoplasms/metabolism , Gene Expression Regulation, Neoplastic , Glioblastoma/metabolism , Heterogeneous-Nuclear Ribonucleoprotein Group F-H/metabolism , Alternative Splicing , Animals , Cerebral Cortex/metabolism , Death Domain Receptor Signaling Adaptor Proteins/metabolism , Exons , Guanine Nucleotide Exchange Factors/metabolism , HeLa Cells , Humans , MAP Kinase Signaling System , Mice , RNA Splicing , Regulatory Elements, Transcriptional
14.
J Neurooncol ; 125(1): 149-56, 2015 Oct.
Article in English | MEDLINE | ID: mdl-26307446

ABSTRACT

Radionecrosis is a well-characterized effect of stereotactic radiosurgery (SRS) and is occasionally associated with serious neurologic sequelae. Here, we investigated the incidence of and clinical variables associated with the development of radionecrosis and related radiographic changes after SRS for brain metastases in a cohort of patients with long-term follow up. 271 brain metastases treated with single-fraction linear accelerator-based SRS were analyzed. Radionecrosis was diagnosed either pathologically or radiographically. Univariate and multivariate Cox regression was performed to determine the association between radionecrosis and clinical factors available prior to treatment planning. After median follow up of 17.2 months, radionecrosis was observed in 70 (25.8%) lesions, including 47 (17.3%) symptomatic cases. 22 of 70 cases (31.4%) were diagnosed pathologically and 48 (68.6%) were diagnosed radiographically. The actuarial incidence of radionecrosis was 5.2% at 6 months, 17.2% at 12 months and 34.0% at 24 months. On univariate analysis, radionecrosis was associated with maximum tumor diameter (HR 3.55, p < 0.001), prior whole brain radiotherapy (HR 2.21, p = 0.004), prescription dose (HR 0.56, p = 0.02) and histology other than non-small cell lung, breast or melanoma (HR 1.85, p = 0.04). On multivariate analysis, only maximum tumor diameter (HR 3.10, p < 0.001) was associated with radionecrosis risk. This data demonstrates that with close imaging follow-up, radionecrosis after single-fraction SRS for brain metastases is not uncommon. Maximum tumor diameter on pre-treatment MR imaging can provide a reliable estimate of radionecrosis risk prior to treatment planning, with the greatest risk among tumors measuring >1 cm.


Subject(s)
Brain Neoplasms/secondary , Brain Neoplasms/surgery , Radiation Injuries/etiology , Radiosurgery/adverse effects , Adult , Age Factors , Aged , Aged, 80 and over , Analysis of Variance , Cohort Studies , Female , Humans , Kaplan-Meier Estimate , Magnetic Resonance Imaging , Male , Middle Aged , Necrosis/etiology , Necrosis/pathology , Radiation Injuries/pathology , Young Adult
15.
Proc Natl Acad Sci U S A ; 109(8): 3041-6, 2012 Feb 21.
Article in English | MEDLINE | ID: mdl-22323597

ABSTRACT

Glioblastoma (GBM) is distinguished by a high degree of intratumoral heterogeneity, which extends to the pattern of expression and amplification of receptor tyrosine kinases (RTKs). Although most GBMs harbor RTK amplifications, clinical trials of small-molecule inhibitors targeting individual RTKs have been disappointing to date. Activation of multiple RTKs within individual GBMs provides a theoretical mechanism of resistance; however, the spectrum of functional RTK dependence among tumor cell subpopulations in actual tumors is unknown. We investigated the pattern of heterogeneity of RTK amplification and functional RTK dependence in GBM tumor cell subpopulations. Analysis of The Cancer Genome Atlas GBM dataset identified 34 of 463 cases showing independent focal amplification of two or more RTKs, most commonly platelet-derived growth factor receptor α (PDGFRA) and epidermal growth factor receptor (EGFR). Dual-color fluorescence in situ hybridization was performed on eight samples with EGFR and PDGFRA amplification, revealing distinct tumor cell subpopulations amplified for only one RTK; in all cases these predominated over cells amplified for both. Cell lines derived from coamplified tumors exhibited genotype selection under RTK-targeted ligand stimulation or pharmacologic inhibition in vitro. Simultaneous inhibition of both EGFR and PDGFR was necessary for abrogation of PI3 kinase pathway activity in the mixed population. DNA sequencing of isolated subpopulations establishes a common clonal origin consistent with late or ongoing divergence of RTK genotype. This phenomenon is especially common among tumors with PDGFRA amplification: overall, 43% of PDGFRA-amplified GBM were found to have amplification of EGFR or the hepatocyte growth factor receptor gene (MET) as well.


Subject(s)
ErbB Receptors/genetics , Gene Amplification , Genetic Heterogeneity , Glioblastoma/enzymology , Glioblastoma/genetics , Intercellular Signaling Peptides and Proteins/metabolism , Receptor, Platelet-Derived Growth Factor alpha/genetics , Cell Proliferation , Chromosome Segregation/genetics , Computer Simulation , Genome, Human/genetics , Glioblastoma/pathology , Humans , In Situ Hybridization, Fluorescence
16.
Acta Neuropathol ; 127(5): 747-59, 2014 May.
Article in English | MEDLINE | ID: mdl-24292886

ABSTRACT

Intragenic deletion is the most common form of activating mutation among receptor tyrosine kinases (RTK) in glioblastoma. However, these events are not detected by conventional DNA sequencing methods commonly utilized for tumor genotyping. To comprehensively assess the frequency, distribution, and expression levels of common RTK deletion mutants in glioblastoma, we analyzed RNA from a set of 192 glioblastoma samples from The Cancer Genome Atlas for the expression of EGFRvIII, EGFRvII, EGFRvV (carboxyl-terminal deletion), and PDGFRAΔ8,9. These mutations were detected in 24, 1.6, 4.7, and 1.6 % of cases, respectively. Overall, 29 % (55/189) of glioblastomas expressed at least one RTK intragenic deletion transcript in this panel. For EGFRvIII, samples were analyzed by both quantitative real-time PCR (QRT-PCR) and single mRNA molecule counting on the Nanostring nCounter platform. Nanostring proved to be highly sensitive, specific, and linear, with sensitivity comparable or exceeding that of RNA seq. We evaluated the prognostic significance and molecular correlates of RTK rearrangements. EGFRvIII was only detectable in tumors with focal amplification of the gene. Moreover, we found that EGFRvIII expression was not prognostic of poor outcome and that neither recurrent copy number alterations nor global changes in gene expression differentiate EGFRvIII-positive tumors from tumors with amplification of wild-type EGFR. The wide range of expression of mutant alleles and co-expression of multiple EGFR variants suggests that quantitative RNA-based clinical assays will be important for assessing the relative expression of intragenic deletions as therapeutic targets and/or candidate biomarkers. To this end, we demonstrate the performance of the Nanostring assay in RNA derived from routinely collected formalin-fixed paraffin-embedded tissue.


Subject(s)
Brain Neoplasms/genetics , Glioblastoma/genetics , Receptor Protein-Tyrosine Kinases/genetics , Sequence Deletion , Brain Neoplasms/diagnosis , Brain Neoplasms/epidemiology , Brain Neoplasms/metabolism , DNA Copy Number Variations , ErbB Receptors/genetics , ErbB Receptors/metabolism , Gene Expression , Gene Expression Profiling/methods , Glioblastoma/diagnosis , Glioblastoma/epidemiology , Glioblastoma/metabolism , Mutation , Prevalence , Prognosis , RNA, Messenger/genetics , RNA, Messenger/metabolism , Receptor Protein-Tyrosine Kinases/metabolism , Reverse Transcriptase Polymerase Chain Reaction , Sequence Analysis, DNA , Sequence Analysis, RNA , Survival Analysis
17.
Proc Natl Acad Sci U S A ; 108(47): 19024-9, 2011 Nov 22.
Article in English | MEDLINE | ID: mdl-22065749

ABSTRACT

Activation of the PI3K and epidermal growth factor receptor (EGFR) pathway is able to drive oncogenesis in multiple human cancers, including head and neck squamous cell carcinoma. Targeted agents such as cetuximab and erlotinib are currently used in patients with head and neck squamous cell carcinoma, but, in this disease, the genomic alterations that cause pathway activation and determine response to pharmacologic inhibition remain ill-defined. Here, we present a detailed dissection of the EGFR/PI3K pathway, composed of sequencing of the core pathway components, and high-resolution genomic copy number assessment. Mutations were found in PIK3CA (6%), but no point mutations were observed in other pathway genes such as PTEN and EGFR. In contrast, we observed frequent copy number alterations of genes in the pathway, including PIK3CA, EGFR, protein tyrosine phosphatase receptor S (PTPRS), and RICTOR. In total, activating genetic pathway alterations were identified in 74% of head and neck tumors. Importantly, intragenic microdeletions of the EGFR phosphatase PTPRS were frequent (26%), identifying this gene as a target of 19p13 loss. PTPRS loss promoted EGFR/PI3K pathway activation, modulated resistance to EGFR inhibition, and strongly determined survival in lung cancer patients with activating EGFR mutations. These findings have important implications for our understanding of head and neck cancer tumorigenesis and for the use of targeted agents for this malignancy.


Subject(s)
Carcinoma, Squamous Cell/enzymology , Chromosome Aberrations , Chromosomes, Human, Pair 19/genetics , ErbB Receptors/metabolism , Head and Neck Neoplasms/enzymology , Phosphatidylinositol 3-Kinases/metabolism , Receptor-Like Protein Tyrosine Phosphatases, Class 2/genetics , Signal Transduction/genetics , Blotting, Western , Comparative Genomic Hybridization , Computational Biology , DNA Copy Number Variations , Gene Knockdown Techniques , Humans , Mutation/genetics , Polymerase Chain Reaction , RNA Interference , Sequence Analysis, DNA
18.
JAMA Netw Open ; 6(10): e2340654, 2023 10 02.
Article in English | MEDLINE | ID: mdl-37906192

ABSTRACT

Importance: Adjuvant stereotactic radiosurgery (SRS) enhances the local control of resected brain metastases (BrM). However, the risks of local failure (LF) and potential for posttreatment adverse radiation effects (PTRE) after early postoperative adjuvant SRS have not yet been established. Objective: To evaluate whether adjuvant SRS delivered within a median of 14 days after surgery is associated with improved LF without a concomitant increase in PTRE. Design, Setting, and Participants: This prospective cohort study examines a clinical workflow (RapidRT) that was implemented from 2019 to 2022 to deliver SRS to surgical patients within a median of 14 days, ensuring all patients were treated within 30 days postoperatively. This prospective cohort was compared with a historical cohort (StanRT) of patients with BrM resected between 2013 and 2019 to assess the association of the RapidRT workflow with LF and PTRE. The 2 cohorts were combined to identify optimal SRS timing, with a median follow-up of 3.3 years for survivors. Exposure: Timing of adjuvant SRS (14, 21, and 30 days postoperatively). Main Outcomes and Measures: LF and PTRE, according to modified Response Assessment in Neuro-Oncology Brain Metastases criteria. Results: There were 438 patients (265 [60.5%] female patients; 23 [5.3%] Asian, 27 [6.2%] Black, and 364 [83.1%] White patients) with a mean (SD) age of 62 (13) years; 377 were in the StanRT cohort and 61 in the RapidRT cohort. LF and PTRE rates at 1 year were not significantly different between RapidRT and StanRT cohorts. Timing of SRS was associated with radiographic PTRE. Patients receiving radiation within 14 days had the highest 1-year PTRE rate (18.08%; 95% CI, 8.31%-30.86%), and patients receiving radiation between 22 and 30 days had the lowest 1-year PTRE rate (4.10%; 95% CI, 1.52%-8.73%; P = .03). LF rates were highest for patients receiving radiation more than 30 days from surgery (10.65%; 95% CI, 6.90%-15.32%) but comparable for patients receiving radiation within 14 days, between 15 and 21 days, and between 22 and 30 days (≤14 days: 5.12%; 95% CI, 0.86%-15.60%; 15 to ≤21 days: 3.21%; 95% CI, 0.59%-9.99%; 22 to ≤30 days: 6.58%; 95% CI, 3.06%-11.94%; P = .20). Conclusions and Relevance: In this cohort study of adjuvant SRS timing following surgical resection of BrM, the optimal timing for adjuvant SRS appears to be within 22 to 30 days following surgery. The findings of this study suggest that this timing allows for a balanced approach that minimizes the risks associated with LF and PTRE.


Subject(s)
Brain Neoplasms , Drug-Related Side Effects and Adverse Reactions , Radiosurgery , Humans , Female , Middle Aged , Male , Prospective Studies , Cohort Studies , Adjuvants, Immunologic , Brain Neoplasms/radiotherapy , Brain Neoplasms/surgery
19.
World Neurosurg ; 158: 216-217, 2022 02.
Article in English | MEDLINE | ID: mdl-34883274

ABSTRACT

A 67-year-old male with chronic lymphocytic leukemia was admitted with headaches and ring-enhancing lesions on magnetic resonance imaging of the brain. His current regimen included rituximab and ibrutinib with trimethoprim-sulfamethoxazole for secondary Pneumocystis jirovecii pneumonia prevention. All other elements of his history were noncontributory. The diagnosis of an invasive fungal infection was made via light microscopy of a stereotactic brain biopsy specimen.


Subject(s)
Pneumocystis carinii , Pneumonia, Pneumocystis , Abscess/complications , Aged , Brain/diagnostic imaging , Humans , Male , Pneumonia, Pneumocystis/complications , Pneumonia, Pneumocystis/diagnosis , Pneumonia, Pneumocystis/prevention & control , Trimethoprim, Sulfamethoxazole Drug Combination
20.
J Neurosurg ; 136(4): 1045-1051, 2022 04 01.
Article in English | MEDLINE | ID: mdl-34507279

ABSTRACT

OBJECTIVE: Stereotactic biopsy is increasingly performed on brain metastases (BrMs) as improving cancer outcomes drive aggressive multimodality treatment, including laser interstitial thermal therapy (LITT). However, the tract recurrence (TR) risk is poorly defined in an era defined by focused-irradiation paradigms. As such, the authors aimed to define indications and adjuvant therapies for this procedure and evaluate the BrM-biopsy TR rate. METHODS: In a single-center retrospective review, the authors identified stereotactic BrM biopsies performed from 2002 to 2020. Surgical indications, radiographic characteristics, stereotactic planning, dosimetry, pre- and postoperative CNS-directed and systemic treatments, and clinical courses were collected. Recurrence was evaluated using RANO-BM (Response Assessment in Neuro-Oncology Brain Metastases) criteria. RESULTS: In total, 499 patients underwent stereotactic intracranial biopsy for any diagnosis, of whom 25 patients (5.0%) underwent biopsy for pathologically confirmed viable BrM, a proportion that increased over the time period studied. Twelve of the 25 BrM patients had ≥ 3 months of radiographic follow-up, of whom 6 patients (50%) developed new metastatic growth along the tract at a median of 5.0 months post-biopsy (range 2.3-17.1 months). All of the TR cases had undergone pre- or early post-biopsy stereotactic radiosurgery (SRS), and 3 had also undergone LITT at the time of initial biopsy. TRs were treated with resection, reirradiation, or observation/systemic therapy. CONCLUSIONS: In this study the authors identified a nontrivial, higher than previously described rate of BrM-biopsy tract recurrence, which often required additional surgery or radiation and justified close radiographic surveillance. As BrMs are commonly treated with SRS limited to enhancing tumor margins, consideration should be made, in cases lacking CNS-active systemic treatments, to include biopsy tracts in adjuvant radiation plans where feasible.


Subject(s)
Brain Neoplasms , Radiosurgery , Biopsy , Brain Neoplasms/diagnostic imaging , Brain Neoplasms/secondary , Brain Neoplasms/therapy , Humans , Radiosurgery/methods , Radiotherapy, Adjuvant , Retrospective Studies , Treatment Outcome
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