Mutation signatures in cancer genomes reflect endogenous and exogenous mutational processes, offering insights into tumour etiology, features for prognostic and biologic stratification and vulnerabilities to be exploited therapeutically. We present a novel machine learning formalism for improved signature inference, based on multi-modal correlated topic models (MMCTM) which can at once infer signatures from both single nucleotide and structural variation counts derived from cancer genome sequencing data. We exemplify the utility of our approach on two hormone driven, DNA repair deficient cancers: breast and ovary (n = 755 samples total). We show how introducing correlated structure both within and between modes of mutation can increase accu...
Background: Studies of cancer mutations have typically focused on identifying cancer driving mutatio...
Cancers are characterized by somatic mutation arising from the interplay of mutagen exposure and def...
Abstract Mutational signatures are key to understanding the processes that shape cancer genomes, yet...
Mutational signatures are patterns of mutations that arise during tumorigenesis. We present an enhan...
Mutational signatures are patterns of mutations that arise during tumorigenesis. We present an enhan...
Cancer is the result of mutagenic processes that can be inferred from tumor genomes by analyzing rat...
International audienceMutational signatures refer to patterns in the occurrence of somatic mutations...
The genome of a cancer cell is replete with somatic mutations imprinted by the activities of differe...
Background A deep understanding of carcinogenesis at the DNA level underpins many advances in cance...
This dissertation proposes tools and analysis of mutational signatures in human cancer and their app...
Cancer is a disease driven and characterised by mutations in the DNA. Different categorisations of D...
Cancer typically forms when mutational processes modify key cancer driver genes, resulting in positi...
Mutations are the driving force of evolution, yet they underlie many diseases and, in particular, ca...
Cancer genomes harbor a catalog of somatic mutations. The type and genomic context of these mutation...
BackgroundStudies of cancer mutations have typically focused on identifying cancer driving mutations...
Background: Studies of cancer mutations have typically focused on identifying cancer driving mutatio...
Cancers are characterized by somatic mutation arising from the interplay of mutagen exposure and def...
Abstract Mutational signatures are key to understanding the processes that shape cancer genomes, yet...
Mutational signatures are patterns of mutations that arise during tumorigenesis. We present an enhan...
Mutational signatures are patterns of mutations that arise during tumorigenesis. We present an enhan...
Cancer is the result of mutagenic processes that can be inferred from tumor genomes by analyzing rat...
International audienceMutational signatures refer to patterns in the occurrence of somatic mutations...
The genome of a cancer cell is replete with somatic mutations imprinted by the activities of differe...
Background A deep understanding of carcinogenesis at the DNA level underpins many advances in cance...
This dissertation proposes tools and analysis of mutational signatures in human cancer and their app...
Cancer is a disease driven and characterised by mutations in the DNA. Different categorisations of D...
Cancer typically forms when mutational processes modify key cancer driver genes, resulting in positi...
Mutations are the driving force of evolution, yet they underlie many diseases and, in particular, ca...
Cancer genomes harbor a catalog of somatic mutations. The type and genomic context of these mutation...
BackgroundStudies of cancer mutations have typically focused on identifying cancer driving mutations...
Background: Studies of cancer mutations have typically focused on identifying cancer driving mutatio...
Cancers are characterized by somatic mutation arising from the interplay of mutagen exposure and def...
Abstract Mutational signatures are key to understanding the processes that shape cancer genomes, yet...