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Combined mismatch repair and POLE/POLD1 defects explain unresolved suspected Lynch syndrome cancers

Authors :
Jansen, Anne ML
van Wezel, Tom
van den Akker, Brendy EWM
Ventayol Garcia, Marina
Ruano, Dina
Tops, Carli MJ
Wagner, Anja
Letteboer, Tom GW
Gómez-García, Encarna B
Devilee, Peter
Wijnen, Juul T
Hes, Frederik J
Morreau, Hans
Source :
European Journal of Human Genetics: EJHG; July 2016, Vol. 24 Issue: 7 p1089-1092, 4p
Publication Year :
2016

Abstract

Many suspected Lynch Syndrome (sLS) patients who lack mismatch repair (MMR) germline gene variants and MLH1 or MSH2 hypermethylation are currently explained by somatic MMR gene variants or, occasionally, by germline POLE variants. To further investigate unexplained sLS patients, we analyzed leukocyte and tumor DNA of 62 sLS patients using gene panel sequencing including the POLE, POLD1 and MMR genes. Forty tumors showed either one, two or more somatic MMR variants predicted to affect function. Nine sLS tumors showed a likely ultramutated phenotype and were found to carry germline (n=2) or somatic variants (n=7) in the POLE/POLD1 exonuclease domain (EDM). Six of these POLE/POLD1-EDM mutated tumors also carried somatic MMR variants. Our findings suggest that faulty proofreading may result in loss of MMR and thereby in microsatellite instability.

Details

Language :
English
ISSN :
10184813 and 14765438
Volume :
24
Issue :
7
Database :
Supplemental Index
Journal :
European Journal of Human Genetics: EJHG
Publication Type :
Periodical
Accession number :
ejs39382874
Full Text :
https://doi.org/10.1038/ejhg.2015.252