For decades, cytogenetic studies have demonstrated that somatically acquired structural rearrangements of the genome are a common feature of most classes of human cancer. However, the characteristics of these rearrangements at sequence-level resolution have thus far been subject to very limited description. One process that is dependent upon somatic genome rearrangement is gene amplification, a mechanism often exploited by cancer cells to increase copy number and hence expression of dominantly acting cancer genes. The mechanisms underlying gene amplification are complex but must involve chromosome breakage and rejoining. We sequenced 133 different genomic rearrangements identified within four cancer amplicons involving the frequently amplif...
Genomic rearrangements in inherited disease and cancer involve gross alterations of chromosomes or l...
SummaryIdentification of somatic rearrangements in cancer genomes has accelerated through analysis o...
Although exome sequencing data are generated primarily to detect single-nucleotide variants and inde...
Multiple somatic rearrangements are often found in cancer genomes; however, the underlying processes...
Multiple somatic rearrangements are often found in cancer genomes; however, the underlying processes...
Multiple somatic rearrangements are often found in cancer genomes; however, the underlying processes...
Multiple somatic rearrangements are often found in cancer genomes; however, the underlying processes...
SUMMARY Multiple somatic rearrangements are often found in cancer genomes. However, the underlying p...
Whole-genome sequencing using massively parallel sequencing technologies enables accurate detection ...
SummaryIdentification of somatic rearrangements in cancer genomes has accelerated through analysis o...
Identification of somatic rearrangements in cancer genomes has accelerated through analysis of high-...
Identification of somatic rearrangements in cancer genomes has accelerated through analysis of high-...
Multiple somatic rearrangements are often found in cancer genomes, but the underlying processes of r...
Identification of somatic rearrangements in cancer genomes has accelerated through analysis of high-...
Genomic rearrangements in inherited disease and cancer involve gross alterations of chromosomes or l...
Genomic rearrangements in inherited disease and cancer involve gross alterations of chromosomes or l...
SummaryIdentification of somatic rearrangements in cancer genomes has accelerated through analysis o...
Although exome sequencing data are generated primarily to detect single-nucleotide variants and inde...
Multiple somatic rearrangements are often found in cancer genomes; however, the underlying processes...
Multiple somatic rearrangements are often found in cancer genomes; however, the underlying processes...
Multiple somatic rearrangements are often found in cancer genomes; however, the underlying processes...
Multiple somatic rearrangements are often found in cancer genomes; however, the underlying processes...
SUMMARY Multiple somatic rearrangements are often found in cancer genomes. However, the underlying p...
Whole-genome sequencing using massively parallel sequencing technologies enables accurate detection ...
SummaryIdentification of somatic rearrangements in cancer genomes has accelerated through analysis o...
Identification of somatic rearrangements in cancer genomes has accelerated through analysis of high-...
Identification of somatic rearrangements in cancer genomes has accelerated through analysis of high-...
Multiple somatic rearrangements are often found in cancer genomes, but the underlying processes of r...
Identification of somatic rearrangements in cancer genomes has accelerated through analysis of high-...
Genomic rearrangements in inherited disease and cancer involve gross alterations of chromosomes or l...
Genomic rearrangements in inherited disease and cancer involve gross alterations of chromosomes or l...
SummaryIdentification of somatic rearrangements in cancer genomes has accelerated through analysis o...
Although exome sequencing data are generated primarily to detect single-nucleotide variants and inde...