Tumours develop in an evolutionary process, in which the accumulation of mutations produces subpopulations of cells with distinct mutational profiles, called clones. This process leads to the genetic heterogeneity widely observed in tumour sequencing data, but identifying the genotypes and frequencies of the different clones is still a major challenge. Here, we present Cloe, a phylogenetic latent feature model to deconvolute tumour sequencing data into a set of related genotypes. Our approach extends latent feature models by placing the features as nodes in a latent tree. The resulting model can capture both the acquisition and the loss of mutations, as well as episodes of convergent evolution. We establish the validity of Cloe on synthetic...
Background: The reconstruction of clonal haplotypes and their evolutionary history in evolving popul...
Abstract Background Genetic heterogeneity of a cancer tumor that develops during clonal evolution is...
<div><p>Recent improvements in next-generation sequencing of tumor samples and the ability to identi...
Tumours develop in an evolutionary process, in which the accumulation of mutations produces subpopul...
Tumours develop in an evolutionary process, in which the accumulation of mutations produces subpopul...
Intratumoural heterogeneity complicates the molecular interpretation of biopsies, as multiple distin...
Clonal deconvolution of mutational landscapes is crucial to understand the evolutionary dynamics of ...
SummaryThe extensive genetic heterogeneity of cancers can greatly affect therapy success due to the ...
The extensive genetic heterogeneity of cancers can greatly affect therapy success due to the existen...
<div><p>Cancers arise from successive rounds of mutation and selection, generating clonal population...
Cancers arise from successive rounds of mutation and selection, generating clonal populations that v...
SummaryThe extensive genetic heterogeneity of cancers can greatly affect therapy success due to the ...
Intra-tumor heterogeneity presents itself through the evolution of subclones during cancer progressi...
Abstract Background High-throughput sequencing allows...
Abstract Background High-throughput sequencing allows...
Background: The reconstruction of clonal haplotypes and their evolutionary history in evolving popul...
Abstract Background Genetic heterogeneity of a cancer tumor that develops during clonal evolution is...
<div><p>Recent improvements in next-generation sequencing of tumor samples and the ability to identi...
Tumours develop in an evolutionary process, in which the accumulation of mutations produces subpopul...
Tumours develop in an evolutionary process, in which the accumulation of mutations produces subpopul...
Intratumoural heterogeneity complicates the molecular interpretation of biopsies, as multiple distin...
Clonal deconvolution of mutational landscapes is crucial to understand the evolutionary dynamics of ...
SummaryThe extensive genetic heterogeneity of cancers can greatly affect therapy success due to the ...
The extensive genetic heterogeneity of cancers can greatly affect therapy success due to the existen...
<div><p>Cancers arise from successive rounds of mutation and selection, generating clonal population...
Cancers arise from successive rounds of mutation and selection, generating clonal populations that v...
SummaryThe extensive genetic heterogeneity of cancers can greatly affect therapy success due to the ...
Intra-tumor heterogeneity presents itself through the evolution of subclones during cancer progressi...
Abstract Background High-throughput sequencing allows...
Abstract Background High-throughput sequencing allows...
Background: The reconstruction of clonal haplotypes and their evolutionary history in evolving popul...
Abstract Background Genetic heterogeneity of a cancer tumor that develops during clonal evolution is...
<div><p>Recent improvements in next-generation sequencing of tumor samples and the ability to identi...