Cancer cells explore a broad mutational landscape, bringing the possibility that tumor-specific somatic mutations could fall in the same codons as germline SNVs and leverage their presence to produce substitutions with a larger impact on protein function. While multiple, temporally consecutive mutations to the same codon have in the past been detected in the germline, this phenomenon has not yet been explored in the context of germline-somatic variant co-occurrences during cancer development. We examined germline context at somatic mutation sites for 1395 patients across four cancer cohorts (breast, skin, colon, and head and neck) and found 392 codon-level co-occurrences between germline and somatic variants, including over a dozen in well-...
Imbalanced expression of somatic alleles in cancer can suggest functional and selective features, an...
All cancers originate from a single cell that starts to behave abnormally due to the acquired somati...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...
Cancer results from the progressive accumulation of genetic alterations that drive uncontrolled cell...
Accumulation of DNA mutations alters amino acid sequence in the key domains of oncoproteins, leading...
A key goal in cancer research is to find the genomic alterations which underlie malignant cells. Gen...
Mutations associated with tumorigenesis may either arise somatically or can be inherited through the...
Germline variants that affect the expression or function of proteins contribute to phenotypic variat...
Background: Genome wide-association studies have successfully identified several hundred independent...
Abstract Background Nonsynonymous mutations change the protein sequences and are frequently subjecte...
Abstract Somatic mutations are an inevitable component of ageing and the most important cause of can...
Human cancers arise from environmental, heritable and somatic factors, but how these mechanisms inte...
Aggregation of genome-wide common risk variants, such as polygenic risk score (PRS), can measure gen...
Genetic variation is the main reason of the phenotypic differences among individuals, as well as of ...
Somatic rearrangements contribute to the mutagenized landscape of cancer genomes. Here, we systemati...
Imbalanced expression of somatic alleles in cancer can suggest functional and selective features, an...
All cancers originate from a single cell that starts to behave abnormally due to the acquired somati...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...
Cancer results from the progressive accumulation of genetic alterations that drive uncontrolled cell...
Accumulation of DNA mutations alters amino acid sequence in the key domains of oncoproteins, leading...
A key goal in cancer research is to find the genomic alterations which underlie malignant cells. Gen...
Mutations associated with tumorigenesis may either arise somatically or can be inherited through the...
Germline variants that affect the expression or function of proteins contribute to phenotypic variat...
Background: Genome wide-association studies have successfully identified several hundred independent...
Abstract Background Nonsynonymous mutations change the protein sequences and are frequently subjecte...
Abstract Somatic mutations are an inevitable component of ageing and the most important cause of can...
Human cancers arise from environmental, heritable and somatic factors, but how these mechanisms inte...
Aggregation of genome-wide common risk variants, such as polygenic risk score (PRS), can measure gen...
Genetic variation is the main reason of the phenotypic differences among individuals, as well as of ...
Somatic rearrangements contribute to the mutagenized landscape of cancer genomes. Here, we systemati...
Imbalanced expression of somatic alleles in cancer can suggest functional and selective features, an...
All cancers originate from a single cell that starts to behave abnormally due to the acquired somati...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...