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Characterization of a rare variant (c.2635-2A>G) of the MSH2gene in a family with Lynch syndrome

Authors :
Cariola, Filomena
Disciglio, Vittoria
Valentini, Anna M.
Lotesoriere, Claudio
Fasano, Candida
Forte, Giovanna
Russo, Luciana
Di Carlo, Antonio
Guglielmi, Floranna
Manghisi, Andrea
Lolli, Ivan
Caruso, Maria L.
Simone, Cristiano
Source :
International Journal of Biological Markers; November 2018, Vol. 33 Issue: 4 p534-539, 6p
Publication Year :
2018

Abstract

Introduction: Lynch syndrome is caused by germline mutations in one of the mismatch repair genes (MLH1, MSH2, MSH6, and PMS2)or in the EPCAMgene. Lynch syndrome is defined on the basis of clinical, pathological, and genetic findings. Accordingly, the identification of predisposing genes allows for accurate risk assessment and tailored screening protocols.Case Description: Here, we report a family case with three family members manifesting the Lynch syndrome phenotype, all of which harbor the rare variant c.2635-2A>G affecting the splice site consensus sequence of intron 15 of the MSH2gene. This mutation was previously described only in one family with Lynch syndrome, in which mismatch repair protein expression in tumor tissues was not assessed. In this study, we report for the first time the molecular characterization of the MSH2c.2635-2A>G variant through in silico prediction analysis, microsatellite instability, and mismatch repair protein expression experiments on tumor tissues of Lynch syndrome patients. The potential effect of the splice site variant was revealed by three splicing prediction bioinformatics tools, which suggested the generation of a new cryptic splicing site. The potential pathogenic role of this variant was also revealed by the presence of microsatellite instability and the absence of MSH2/MSH6 heterodimer protein expression in the tumor cells of cancer tissues of the affected family members.Conclusions: We provide compelling evidence in favor of the pathogenic role of the MSH2variant c.2635-2A>G, which could induce an alteration of the canonical splice site and consequently an aberrant form of the protein product (MSH2).

Details

Language :
English
ISSN :
03936155 and 17246008
Volume :
33
Issue :
4
Database :
Supplemental Index
Journal :
International Journal of Biological Markers
Publication Type :
Periodical
Accession number :
ejs47502787
Full Text :
https://doi.org/10.1177/1724600818766496