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PMID: 23738515 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Characterization of uterine leiomyomas by whole-genome sequencing.

The New England journal of medicine ·Vol. 369 ·No. 1 ·2013-07-04 ·Pages 43-53

Mehine M, Kaasinen E, Mäkinen N, Katainen R, Kämpjärvi K, Pitkänen E, Heinonen HR, Bützow R, Kilpivaara O, Kuosmanen A, Ristolainen H, Gentile M, Sjöberg J, Vahteristo P, Aaltonen LA

Abstract

Uterine leiomyomas are benign but affect the health of millions of women. A better understanding of the molecular mechanisms involved may provide clues to the prevention and treatment of these lesions. We performed whole-genome sequencing and gene-expression profiling of 38 uterine leiomyomas and the corresponding myometrium from 30 women. Identical variants observed in some separate tumor nodules suggested that these nodules have a common origin. Complex chromosomal rearrangements resembling chromothripsis were a common feature of leiomyomas. These rearrangements are best explained by a single event of multiple chromosomal breaks and random reassembly. The rearrangements created tissue-specific changes consistent with a role in the initiation of leiomyoma, such as translocations of the HMGA2 and RAD51B loci and aberrations at the COL4A5-COL4A6 locus, and occurred in the presence of normal TP53 alleles. In some cases, separate events had occurred more than once in single tumor-cell lineages. Chromosome shattering and reassembly resembling chromothripsis (a single genomic event that results in focal losses and rearrangements in multiple genomic regions) is a major cause of chromosomal abnormalities in uterine leiomyomas; we propose that tumorigenesis occurs when tissue-specific tumor-promoting changes are formed through these events. Chromothripsis has previously been associated with aggressive cancer; its common occurrence in leiomyomas suggests that it also has a role in the genesis and progression of benign tumors. We observed that multiple separate tumors could be seeded from a single lineage of uterine leiomyoma cells. (Funded by the Academy of Finland Center of Excellence program and others.).

MeSH Terms
Chromosome Aberrations Chromosome Breakage Chromosome Deletion Collagen Type IV/genetics Female Fumarate Hydratase/deficiency,genetics Gene Expression Profiling Gene Rearrangement Genome-Wide Association Study Humans Leiomyoma/genetics Mediator Complex/genetics Mutation Myometrium/chemistry Up-Regulation Uterine Neoplasms/genetics
Chemicals
COL4A5 protein, human COL4A6 protein, human Collagen Type IV MED12 protein, human Mediator Complex Fumarate Hydratase
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Mehine Miika
Department of Medical Genetics, Genome-Scale Biology Research Program, University of Helsinki and Helsinki University Central Hospital, Helsinki, Finland.
Kaasinen Eevi
Mäkinen Netta
Katainen Riku
Kämpjärvi Kati
Pitkänen Esa
Heinonen Hanna-Riikka
Bützow Ralf
Kilpivaara Outi
Kuosmanen Anna
Ristolainen Heikki
Gentile Massimiliano
Sjöberg Jari
Vahteristo Pia
Aaltonen Lauri A
Article Info
Journal
The New England journal of medicine
Abbr.
N Engl J Med
ISSN
1533-4406
Published
2013-07-04
Epub
2013-00-05
Pages
43-53
Language
English
Region
United States
NLM ID
0255562
Subset
IM
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