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Pedican
Pediatric cancer database
General information | Literature | Expression | Regulation | Mutation | Interaction

Basic Information

Gene ID

2736

Name

GLI2

Synonymous

HPE9|THP1|THP2;GLI family zinc finger 2;GLI2;GLI family zinc finger 2

Definition

GLI-Kruppel family member GLI2|glioma-associated oncogene family zinc finger 2|oncogene GLI2|tax helper protein 1|tax helper protein 2|tax-responsive element-2 holding protein|tax-responsive element-25-bp sequence binding protein|zinc finger protein GLI2

Position

2q14

Gene type

protein-coding

Cancer type

Abstract

medulloblastoma;Neurological

Focal high-level amplifications of MYC (or MYCC) define a subset of high-risk medulloblastoma patients. However, the prognostic role of MYCN oncogene amplification remains unresolved. We aimed to evaluate the prognostic value of this alteration alone and in combination with biological modifiers in 67 pediatric medulloblastomas with MYCN amplification (MYCN-MB). Twenty-one MYCN-MBwere examined using gene expression profiling and array-CGH, whereas for 46 tumors immunohistochemical analysis and FISH were performed. ALL 67 tumors were further subjected to mutational analyses. We compared molecular, clinical, and prognostic characteristics both within biological MYCN-MB groups and with non-amplified tumors. Transcriptomic analysis revealed SHH-driven tumorigenesis in a subset of MYCN-MBs indicating a biological dichotomy of MYCN-MB. Activationof SHH was accompanied by variant-specific cytogenetic aberrations including deletion of 9q in SHH tumors. Non-SHH MB were associated with gain of 7q and isochromosome 17q/17q gain. Among clinically relevant variables, SHH subtype and10q loss for non-SHH tumors comprised the most powerful markers of favorable prognosis in MYCN-MB. In conclusion, we demonstrate considerable heterogeneity within MYCN-MB in terms of genetics, tumor biology, and clinical outcome. Thus, assessment of disease group and 10q copy-number status may improve risk stratification of this group and may delineate MYCN-MB with the same dismal prognosis as MYC amplified tumors. Furthermore, based on the enrichment of MYCN and GLI2 amplifications in SHH-driven medulloblastoma, amplification of these downstream signaling intermediates should be taken into account before a patientis enrolled into a clinical trial using a smoothened inhibitor.

osteosarcoma;Bone

The gli gene, originally identified by its amplified copy number in cells from ahuman malignant glioma, has a predicted translation product that contains five tandem DNA-binding zinc finger motifs related to those of Kruppel, a developmentally important Drosophila segmentation gene. Because of the potentialimportance of overproduction of this protein in neoplastic development, we examined DNAs from 29 cases of childhood sarcoma for evidence of amplification of the gli gene. In one of the 13 rhabdomyosarcomas studied, genomic DNA restriction fragments containing the gli gene were amplified approximately 30-fold, and expression of the 4.0-kilobase gli mRNA transcript was identified. The tumor with gli gene amplification lacked the usual histological features of alveolar or embryonal rhabdomyosarcoma; however, ultrastructural analysis of tumor cells established in culture revealed attenuated sarcomeres, resembling those found inprimitive rhabdomyoblasts. Cytogenetic analysis of this cell line disclosed double-minute chromatin bodies, with no apparent rearrangements in the region ofthe gli locus on the long arm of chromosome 12, bands q13 to q14.3. A 15-fold level of gli amplification and gli mRNA transcripts were also detected in an established cell line from a patient with a rare form of osteosarcoma characterized by multipotential histological features. A similar level of gli gene amplification was observed in cryopreserved primary tumor cells from this patient, confirming that gene amplification took place during tumor development and not during in vitro cell culture. Amplified gli sequences were cytogenetically localized by in situ hybridization to a homogeneously staining region contained on a derivative chromosome 7. Of eight osteosarcomas and seven Ewing's sarcomas with typical histopathological features, none had detectable rearrangements or amplification of gli sequences. Thus, gli gene amplification in childhood sarcomas appears restricted to tumors with primitive histopathologicalfeatures, perhaps reflecting overproduction of a gene product able to influence gene expression during early mesenchymal cell development.

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