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A Comprehensive Strategy for Accurate Mutation Detection of the Highly Homologous PMS2

Authors :
Li, Jianli
Dai, Hongzheng
Feng, Yanming
Tang, Jia
Chen, Stella
Tian, Xia
Gorman, Elizabeth
Schmitt, Eric S.
Hansen, Terah A.A.
Wang, Jing
Plon, Sharon E.
Zhang, Victor Wei
Wong, Lee-Jun C.
Source :
The Journal of Molecular Diagnostics; September 2015, Vol. 17 Issue: 5 p545-553, 9p
Publication Year :
2015

Abstract

Germline mutations in the DNA mismatch repair gene PMS2underlie the cancer susceptibility syndrome, Lynch syndrome. However, accurate molecular testing of PMS2is complicated by a large number of highly homologous sequences. To establish a comprehensive approach for mutation detection of PMS2, we have designed a strategy combining targeted capture next-generation sequencing (NGS), multiplex ligation-dependent probe amplification, and long-range PCR followed by NGS to simultaneously detect point mutations and copy number changes of PMS2. Exonic deletions (E2 to E9, E5 to E9, E8, E10, E14, and E1 to E15), duplications (E11 to E12), and a nonsense mutation, p.S22*, were identified. Traditional multiplex ligation-dependent probe amplification and Sanger sequencing approaches cannot differentiate the origin of the exonic deletions in the 3′ region when PMS2and PMS2CLshare identical sequences as a result of gene conversion. Our approach allows unambiguous identification of mutations in the active gene with a straightforward long-range-PCR/NGS method. Breakpoint analysis of multiple samples revealed that recurrent exon 14 deletions are mediated by homologous Alusequences. Our comprehensive approach provides a reliable tool for accurate molecular analysis of genes containing multiple copies of highly homologous sequences and should improve PMS2molecular analysis for patients with Lynch syndrome.

Details

Language :
English
ISSN :
15251578
Volume :
17
Issue :
5
Database :
Supplemental Index
Journal :
The Journal of Molecular Diagnostics
Publication Type :
Periodical
Accession number :
ejs36238764
Full Text :
https://doi.org/10.1016/j.jmoldx.2015.04.001