Polyclonal-to-monoclonal transition in colorectal precancerous evolution.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39478225.
- Also identified by DOI 10.1038/s41586-024-08133-1.
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Abstract
Unravelling the origin and evolution of precancerous lesions is crucial for effectively preventing malignant transformation, yet our current knowledge remains limited<sup>1-3</sup>. Here we used a base editor-enabled DNA barcoding system<sup>4</sup> to comprehensively map single-cell phylogenies in mouse models of intestinal tumorigenesis induced by inflammation or loss of the Apc gene. Through quantitative analysis of high-resolution phylogenies including 260,922 single cells from normal, inflamed and neoplastic intestinal tissues, we identified tens of independent cell lineages undergoing parallel clonal expansions within each lesion. We also found polyclonal origins of human sporadic colorectal polyps through bulk whole-exome sequencing and single-gland whole-genome sequencing. Genomic and clinical data support a model of polyclonal-to-monoclonal transition, with monoclonal lesions representing a more advanced stage. Single-cell RNA sequencing revealed extensive intercellular interactions in early polyclonal lesions, but there was significant loss of interactions during monoclonal transition. Therefore, our data suggest that colorectal precancer is often founded by many different lineages and highlight their cooperative interactions in the earliest stages of cancer formation. These findings provide insights into opportunities for earlier intervention in colorectal cancer.
Medical subject headings
- Cell Lineage
- Clonal Evolution
- Clone Cells
- Colorectal Neoplasms
- Precancerous Conditions
- Single-Cell Analysis