Item does not contain fulltextMutational processes underlie cancer initiation and progression. Signatures of these processes in cancer genomes may explain cancer etiology and could hold diagnostic and prognostic value. We developed a strategy that can be used to explore the origin of cancer-associated mutational signatures. We used CRISPR-Cas9 technology to delete key DNA repair genes in human colon organoids, followed by delayed subcloning and whole-genome sequencing. We found that mutation accumulation in organoids deficient in the mismatch repair gene MLH1 is driven by replication errors and accurately models the mutation profiles observed in mismatch repair-deficient colorectal cancers. Application of this strategy to the cancer predisp...
Whole-genome-sequencing (WGS) of human tumours has revealed distinct mutation patterns that hint at ...
Somatic mutations in cancer genomes are caused by multiple mutational processes, each of which gener...
The CRISPR/Cas9 system is transforming many biomedical disciplines, including cancer research. Throu...
Mutational processes underlie cancer initiation and progression. Signatures of these processes in ca...
Somatic mutations in cancer genomes can be caused by many different mutational processes, each of wh...
Mutational signatures are imprints of pathophysiological processes arising through tumorigenesis. We...
Mutational signatures are imprints of pathophysiological processes arising through tumorigenesis. He...
A cancer genome carries the historic mutagenic activity that has occurred throughout the development...
The extreme variation in cancer risk across tissues was recently proposed to depend on the lifetime ...
The diversity of somatic mutations in human cancers can be decomposed into individual mutational sig...
The genome of a cancer cell is replete with somatic mutations imprinted by the activities of differe...
Motivation: As one of the most common and life-threatening diseases in humans, cancer is a result of...
Genomic analyses have revealed mutational footprints associated with DNA maintenance gone awry, or w...
Whole-genome-sequencing (WGS) of human tumours has revealed distinct mutation patterns that hint at ...
Many processes can cause the same nucleotide change in a genome, making the identification of the m...
Whole-genome-sequencing (WGS) of human tumours has revealed distinct mutation patterns that hint at ...
Somatic mutations in cancer genomes are caused by multiple mutational processes, each of which gener...
The CRISPR/Cas9 system is transforming many biomedical disciplines, including cancer research. Throu...
Mutational processes underlie cancer initiation and progression. Signatures of these processes in ca...
Somatic mutations in cancer genomes can be caused by many different mutational processes, each of wh...
Mutational signatures are imprints of pathophysiological processes arising through tumorigenesis. We...
Mutational signatures are imprints of pathophysiological processes arising through tumorigenesis. He...
A cancer genome carries the historic mutagenic activity that has occurred throughout the development...
The extreme variation in cancer risk across tissues was recently proposed to depend on the lifetime ...
The diversity of somatic mutations in human cancers can be decomposed into individual mutational sig...
The genome of a cancer cell is replete with somatic mutations imprinted by the activities of differe...
Motivation: As one of the most common and life-threatening diseases in humans, cancer is a result of...
Genomic analyses have revealed mutational footprints associated with DNA maintenance gone awry, or w...
Whole-genome-sequencing (WGS) of human tumours has revealed distinct mutation patterns that hint at ...
Many processes can cause the same nucleotide change in a genome, making the identification of the m...
Whole-genome-sequencing (WGS) of human tumours has revealed distinct mutation patterns that hint at ...
Somatic mutations in cancer genomes are caused by multiple mutational processes, each of which gener...
The CRISPR/Cas9 system is transforming many biomedical disciplines, including cancer research. Throu...