The discovery of drivers of cancer has traditionally focused on protein-coding genes1-4. Here we present analyses of driver point mutations and structural variants in non-coding regions across 2,658 genomes from the Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium5 of the International Cancer Genome Consortium (ICGC) and The Cancer Genome Atlas (TCGA). For point mutations, we developed a statistically rigorous strategy for combining significance levels from multiple methods of driver discovery that overcomes the limitations of individual methods. For structural variants, we present two methods of driver discovery, and identify regions that are significantly affected by recurrent breakpoints and recurrent somatic juxtapositions. Our a...
Cancers are caused by genomic alterations known as drivers. As drivers have broad applications in pr...
The identification of somatic mutations that play a causal role in tumour development, so called “dr...
Cancer is driven by genetic change, and the advent of massively parallel sequencing has enabled syst...
The discovery of drivers of cancer has traditionally focused on protein-coding genes1,2,3,4. Here we...
The discovery of drivers of cancer has traditionally focused on protein-coding genes1-4. Here we pre...
The discovery of drivers of cancer has traditionally focused on protein-coding genes1-4. Here we pre...
The discovery of drivers of cancer has traditionally focused on protein-coding genes14. Here we pres...
The discovery of drivers of cancer has traditionally focused on protein-coding genes1-4. Here we pre...
Discovery of cancer drivers has traditionally focused on the identification of protein-coding genes....
The catalog of cancer driver mutations in protein-coding genes has greatly expanded in the past deca...
Background: The identification of mutations that play a causal role in tumour development, so called...
The catalog of cancer driver mutations in protein-coding genes has greatly expanded in the past deca...
Cancer develops through a process of somatic evolution1,2. Sequencing data from a single biopsy repr...
Cancers are caused by genomic alterations known as drivers. As drivers have broad applications in pr...
The identification of somatic mutations that play a causal role in tumour development, so called “dr...
Cancer is driven by genetic change, and the advent of massively parallel sequencing has enabled syst...
The discovery of drivers of cancer has traditionally focused on protein-coding genes1,2,3,4. Here we...
The discovery of drivers of cancer has traditionally focused on protein-coding genes1-4. Here we pre...
The discovery of drivers of cancer has traditionally focused on protein-coding genes1-4. Here we pre...
The discovery of drivers of cancer has traditionally focused on protein-coding genes14. Here we pres...
The discovery of drivers of cancer has traditionally focused on protein-coding genes1-4. Here we pre...
Discovery of cancer drivers has traditionally focused on the identification of protein-coding genes....
The catalog of cancer driver mutations in protein-coding genes has greatly expanded in the past deca...
Background: The identification of mutations that play a causal role in tumour development, so called...
The catalog of cancer driver mutations in protein-coding genes has greatly expanded in the past deca...
Cancer develops through a process of somatic evolution1,2. Sequencing data from a single biopsy repr...
Cancers are caused by genomic alterations known as drivers. As drivers have broad applications in pr...
The identification of somatic mutations that play a causal role in tumour development, so called “dr...
Cancer is driven by genetic change, and the advent of massively parallel sequencing has enabled syst...