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Comprehensive Mutation Analysis of PMS2 in a Large Cohort of Probands Suspected of Lynch Syndrome or Constitutional Mismatch Repair Deficiency Syndrome

Authors :
Maartje Nielsen
Marjolijn J. L. Ligtenberg
Yvonne Tiersma
Juul T. Wijnen
Maran J. W. Olderode-Berends
Encarna Gomez Garcia
B. Redeker
José B. M. Zonneveld
Sanne W. ten Broeke
Frederik J. Hes
Carli M. J. Tops
Peter Devilee
Theo A. M. van Os
Christi J. van Asperen
Hans J. J. P. Gille
Niels de Wind
Heleen M. van der Klift
Arjen R. Mensenkamp
Tom G.W. Letteboer
Yvonne J. Vos
Elsa C. Bik
Mark Drost
S. Verhoef
Liselotte P. van Hest
Anja Wagner
Human Genetics
Human genetics
CCA - Cancer biology
RS: GROW - R4 - Reproductive and Perinatal Medicine
MUMC+: DA KG Polikliniek (9)
Klinische Genetica
Medical Genetics
Clinical Genetics
Source :
Human mutation, 37(11), 1162-1179. Wiley-Liss Inc., Human Mutation, 37(11), 1162-1179. Wiley-Liss Inc., Human Mutation, 37(11), 1162–1179. Wiley-Liss Inc., Human Mutation, 37(11), 1162-1179. Wiley, Human Mutation, 37(11), 1162-1179, Human Mutation, 37, 11, pp. 1162-1179, Human Mutation, 37, 1162-1179, van der Klift, H M, Mensenkamp, A R, Drost, M, Bik, E C, Vos, Y J, Gille, H J J P, Redeker, B E J W, Tiersma, Y, Zonneveld, J B M, Garcia, E G, Letteboer, T G W, Olderode-Berends, M J W, van Hest, L P, van Os, T A, Verhoef, S, Wagner, A, van Asperen, C J, Ten Broeke, S W, Hes, F J, de Wind, N, Nielsen, M, Devilee, P, Ligtenberg, M J L, Wijnen, J T & Tops, C M J 2016, ' Comprehensive Mutation Analysis of PMS2 in a Large Cohort of Probands Suspected of Lynch Syndrome or Constitutional Mismatch Repair Deficiency Syndrome ', Human Mutation, vol. 37, no. 11, pp. 1162-1179 . https://doi.org/10.1002/humu.23052
Publication Year :
2016

Abstract

Monoallelic PMS2 germline mutations cause 5-15% of Lynch syndrome, a midlife cancer predisposition, whereas biallelic PMS2 mutations cause approximately 60% of constitutional MMR deficiency (CMMRD), a rare childhood cancer syndrome. Recently improved DNA and RNA-based strategies are applied to overcome problematic PMS2 mutation analysis due to the presence of pseudogenes and frequent gene conversion events. Here, we determined PMS2 mutation detection yield and mutation spectrum in a nationwide cohort of 396 probands. Furthermore, we studied concordance between tumor IHC/ MSI (immunohistochemistry/ microsatellite-instability) profile and mutation carrier state. Overall, we found 52 different pathogenic PMS2 variants explaining 121 Lynch syndrome and nine CMMRD patients. In vitro MMR assays suggested pathogenicity for three missense variants. Ninety-one PMS2 mutation carriers (70%) showed isolated loss of PMS2 in their tumors, for 31 (24%) no or inconclusive IHC was available, and eight carriers (6%) showed discordant IHC (presence of PMS2 or loss of both MLH1 and PMS2). Ten cases with isolated PMS2 loss (10%; 10/97) harbored MLH1 mutations. We confirmed that recently improved mutation analysis provides a high yield of PMS2 mutations in patients with isolated loss of PMS2 expression. Application of universal tumor pre-screening methods will however miss some PMS2 germline mutation carriers. This article is protected by copyright. All rights reserved.

Details

Language :
English
ISSN :
10597794
Volume :
37
Issue :
11
Database :
OpenAIRE
Journal :
Human Mutation
Accession number :
edsair.doi.dedup.....d0e47d3e18fe6f732f598289c985f991
Full Text :
https://doi.org/10.1002/humu.23052