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Study identifies previously missed DNA mutation pattern in colorectal cancer

20 Aug 2026
Study identifies previously missed DNA mutation pattern in colorectal cancer

Researchers from University of California San Diego and collaborators have identified a previously overlooked pattern of DNA mutations in colorectal cancer.

Scientists use these patterns, known as mutational signatures, to investigate the biological and environmental processes that have damaged DNA during cancer development.

While the previously identified pattern had been detected in large cancer-genome datasets before, researchers had interpreted it as a combination of other, already known mutation patterns.

When the researchers took a closer look, they found that the pattern was not associated with the known processes it had been attributed to.

They also found the same pattern in three independent colorectal cancer datasets, together comprising 2,616 tumours, providing evidence that it is a genuine and recurring feature of some colorectal cancers.

The researchers found that the mutation pattern appears relatively late as colorectal tumours develop.

This suggests that something may change during tumour development that causes cancer cells to accumulate a new type of DNA damage or copying error.

The researchers also found that tumours with the newly recognised pattern had more small insertions and deletions in their DNA.

The study was led by first author Mariya Kazachkova, PhD, and Alexandrov and published in Nature Communications.

Because insertions and deletions can arise during DNA replication and repair, this finding provides an additional clue that the newly recognised pattern may be related to these processes.

More broadly, the study addresses one of the fundamental challenges in cancer genomics: Determining what unusual mutational patterns can reveal about the processes that shape cancer development.

The work was completed by Team Mutographs, funded by Cancer Grand Challenges (CGC).

Mutographs seeks to address the critical question about the relationship between mutational signatures and cancer development.

This work now provides a foundation for Team CAUSE, a recently funded CGC team led by the study’s senior author Ludmil Alexandrov, PhD, professor of cellular and molecular medicine and bioengineering at University of California San Diego and member of the Moores Cancer Centre, which will build on these discoveries to identify the underlying mechanisms driving these and other unexplained mutational signatures in cancer.

Source: University of California - San Diego