Cancers are characterized by non-random chromosome copy number alterations that presumably contain oncogenes and tumor-suppressor genes (TSGs). The affected loci are often large, making it difficult to pinpoint which genes are driving the cancer. Here we report a cross-species in vivo screen of 84 candidate oncogenes and 39 candidate TSGs, located within 28 recurrent chromosomal alterations in ependymoma. Through a series of mouse models, we validate eight new ependymoma oncogenes and ten new ependymoma TSGs that converge on a small number of cell functions, including vesicle trafficking, DNA modification and cholesterol biosynthesis, identifying these as potential new therapeutic targets.We are grateful to F.B. Gertler (Massachusetts Insti...
The completion of the human genome project has enabled several new technologies for studying cancer ...
Cancer arises because of genetic changes in somatic cells, eventually giving rise to overt malignanc...
With the proliferation of high-throughput technologies to profile the cancer genome, methods to dist...
Genomic sequencing has driven precision-based oncology therapy; however, the genetic drivers of many...
Comparative genomic hybridization (CGH) can reveal important disease genes but the large regions ide...
Despite brain tumours being the leading cause of cancer death in children and ependymoma being the t...
Cancer is a result of genetic and epigenetic aberrations acquired by somatic cells over time. Cancer...
Highly rearranged and mutated cancer genomes present major challenges in the identification of patho...
BACKGROUND:: Ependymomas derive from ependymal cells that cover the cerebral ventricles and the cent...
Brain tumors are the leading cause of cancer death in children, with ependymoma being the third most...
Cancer is a complex disease in which cells progressively accumulate mutations disrupting their cellu...
Ependymoma (EPN) is a group of central nervous system tumors most commonly observed in young childre...
Abstracts from Neuro-Oncology are provided here courtesy of Society for Neuro-Oncology and Duke Univ...
Ependymomas exist within distinct genetic subgroups, but the molecular diversity within individual e...
The discovery of chromosomal translocations in leukemia/lymphoma and sarcomas presaged a widespread ...
The completion of the human genome project has enabled several new technologies for studying cancer ...
Cancer arises because of genetic changes in somatic cells, eventually giving rise to overt malignanc...
With the proliferation of high-throughput technologies to profile the cancer genome, methods to dist...
Genomic sequencing has driven precision-based oncology therapy; however, the genetic drivers of many...
Comparative genomic hybridization (CGH) can reveal important disease genes but the large regions ide...
Despite brain tumours being the leading cause of cancer death in children and ependymoma being the t...
Cancer is a result of genetic and epigenetic aberrations acquired by somatic cells over time. Cancer...
Highly rearranged and mutated cancer genomes present major challenges in the identification of patho...
BACKGROUND:: Ependymomas derive from ependymal cells that cover the cerebral ventricles and the cent...
Brain tumors are the leading cause of cancer death in children, with ependymoma being the third most...
Cancer is a complex disease in which cells progressively accumulate mutations disrupting their cellu...
Ependymoma (EPN) is a group of central nervous system tumors most commonly observed in young childre...
Abstracts from Neuro-Oncology are provided here courtesy of Society for Neuro-Oncology and Duke Univ...
Ependymomas exist within distinct genetic subgroups, but the molecular diversity within individual e...
The discovery of chromosomal translocations in leukemia/lymphoma and sarcomas presaged a widespread ...
The completion of the human genome project has enabled several new technologies for studying cancer ...
Cancer arises because of genetic changes in somatic cells, eventually giving rise to overt malignanc...
With the proliferation of high-throughput technologies to profile the cancer genome, methods to dist...