Literature DB >> 26119426

Many private mutations originate from the first few divisions of a human colorectal adenoma.

Haeyoun Kang1, Matthew P Salomon2, Andrea Sottoriva3, Junsong Zhao2, Morgan Toy4, Michael F Press4, Christina Curtis5, Paul Marjoram2, Kimberly Siegmund2, Darryl Shibata4.   

Abstract

Intratumoural mutational heterogeneity (ITH) or the presence of different private mutations in different parts of the same tumour is commonly observed in human tumours. The mechanisms generating such ITH are uncertain. Here we find that ITH can be remarkably well structured by measuring point mutations, chromosome copy numbers, and DNA passenger methylation from opposite sides and individual glands of a 6 cm human colorectal adenoma. ITH was present between tumour sides and individual glands, but the private mutations were side-specific and subdivided the adenoma into two major subclones. Furthermore, ITH disappeared within individual glands because the glands were clonal populations composed of cells with identical mutant genotypes. Despite mutation clonality, the glands were relatively old, diverse populations when their individual cells were compared for passenger methylation and by FISH. These observations can be organized into an expanding star-like ancestral tree with co-clonal expansion, where many private mutations and multiple related clones arise during the first few divisions. As a consequence, most detectable mutational ITH in the final tumour originates from the first few divisions. Much of the early history of a tumour, especially the first few divisions, may be embedded within the detectable ITH of tumour genomes.
Copyright © 2015 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.

Entities:  

Keywords:  Big Bang tumourigenesis; adenoma; colorectal; intratumoural heterogeneity; mutation topography

Mesh:

Substances:

Year:  2015        PMID: 26119426      PMCID: PMC4607608          DOI: 10.1002/path.4581

Source DB:  PubMed          Journal:  J Pathol        ISSN: 0022-3417            Impact factor:   7.996


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9.  A Big Bang model of human colorectal tumor growth.

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