Recurrence and Variability of Germline EPCAM Deletions in Lynch Syndrome

RP (Roland) Kuiper, LELM Vissers, R Venkatachalam, D Bodmer, E Hoenselaar, M (Monique) Goossens, A Haufe, E Kamping, RC Niessen, FBL Hogervorst, JJP Gille, B Redeker, CMJ Tops, ME van Gijn, Ans van den Ouweland, N Rahner, V Steinke, P Kahl, E Holinski-Feder, Marjolein MorakM Kloor, S Stemmler, B Betz, P Hutter, DJ Bunyan, S Syngal, JO Culver, T Graham, TL Chan, ID Nagtegaal, JHJM van Krieken, HK Schackert, N Hoogerbrugge, AG van Kessel, MJL Ligtenberg

Research output: Contribution to journalArticleAcademicpeer-review

124 Citations (Scopus)

Abstract

Recently, we identified 3' end deletions in the EPCAM gene as a novel cause of Lynch syndrome. These truncating EPCAM deletions cause allele-specific epigenetic silencing of the neighboring DNA mismatch repair gene MSH2 in tissues expressing EPCAM. Here we screened a cohort of unexplained Lynch-like families for the presence of EPCAM deletions. We identified 27 novel independent MSH2-deficient families from multiple geographical origins with varying deletions all encompassing the 3' end of EPCAM, but leaving the MSH2 gene intact. Within The Netherlands and Germany, EPCAM deletions appeared to represent at least 2.8% and 1.1% of the confirmed Lynch syndrome families, respectively. MSH2 promoter methylation was observed in epithelial tissues of all deletion carriers tested, thus confirming silencing of MSH2 as the causative defect. In a total of 45 families, 19 different deletions were found, all including the last two exons and the transcription termination signal of EPCAM. All deletions appeared to originate from Alu-repeat mediated recombination events. In 17 cases regions of microhomology around the breakpoints were found, suggesting nonallelic homologous recombination as the most likely mechanism. We conclude that 3' end EPCAM deletions are a recurrent cause of Lynch syndrome, which should be implemented in routine Lynch syndrome diagnostics. Hum Mutat 32: 407-414, 2011. (C) 2011 Wiley-Liss, Inc.
Original languageUndefined/Unknown
Pages (from-to)407-414
Number of pages8
JournalHuman Mutation
Volume32
Issue number4
DOIs
Publication statusPublished - 2011

Cite this