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PMS2 inactivation by a complex rearrangement involving an HERV retroelement and the inverted 100-kb duplicon on 7p22.1

Authors :
Johannes Zschocke
Christian P. Kratz
Annekatrin Wernstedt
Tim Ripperger
Julia Vogt
Katharina Wimmer
Brigitte Pabst
Source :
European Journal of Human Genetics. 24:1598-1604
Publication Year :
2016
Publisher :
Springer Science and Business Media LLC, 2016.

Abstract

Biallelic PMS2 mutations are responsible for more than half of all cases of constitutional mismatch repair deficiency (CMMRD), a recessively inherited childhood cancer predisposition syndrome. The mismatch repair gene PMS2 is partly embedded within one copy of an inverted 100-kb low-copy repeat (LCR) on 7p22.1. In an individual with CMMRD syndrome, PMS2 was found to be homozygously inactivated by a complex chromosomal rearrangement, which separates the 5'-part from the 3'-part of the gene. The rearrangement involves sequences of the inverted 100-kb LCR and a human endogenous retrovirus element and may be associated with an inversion that is indistinguishable from the known inversion polymorphism affecting the ~0.7-Mb sequence intervening the LCR. Its formation is best explained by a replication-based mechanism (RBM) such as fork stalling and template switching/microhomology-mediated break-induced replication (FoSTeS/MMBIR). This finding supports the hypothesis that the inverted LCR can not only facilitate the formation of the non-allelic homologous recombination-mediated inversion polymorphism but it also promotes the occurrence of more complex rearrangements that can be associated with a large inversion, as well, but are mediated by a RBM. This further suggests that among the inversion polymorphism on 7p22.1, more complex rearrangements might be hidden. Furthermore, as the locus is embedded in a common fragile site (CFS) region, this rearrangement also supports the recently raised hypothesis that CFS sequence motifs may facilitate replication-based rearrangement mechanisms.

Details

ISSN :
14765438 and 10184813
Volume :
24
Database :
OpenAIRE
Journal :
European Journal of Human Genetics
Accession number :
edsair.doi.dedup.....329c2e0d666d25d1c703e0f3196e0cd5
Full Text :
https://doi.org/10.1038/ejhg.2016.75