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Analysis of the DND1 gene in men with sporadic and familial testicular germ cell tumors
Authors:Linger Rachel  Dudakia Darshna  Huddart Robert  Tucker Kathy  Friedlander Michael  Phillips Kelly-Anne  Hogg David  Jewett Michael A S  Lohynska Radka  Daugaard Gedske  Richard Stéphane  Chompret Agnes  Stoppa-Lyonnet Dominique  Bonaïti-Pellié Catherine  Heidenreich Axel  Albers Peter  Olah Edith  Geczi Lajos  Bodrogi Istvan  Daly Peter A  Guilford Parry  Fosså Sophie D  Heimdal Ketil  Tjulandin Sergei A  Liubchenko Ludmila  Stoll Hans  Weber Walter  Einhorn Lawrence  McMaster Mary  Korde Larissa  Greene Mark H  Nathanson Katherine L  Cortessis Victoria  Easton Douglas F  Bishop D Timothy  Stratton Michael R  Rapley Elizabeth A
Affiliation:Testicular Cancer Genetics Team, Section of Cancer Genetics, Institute of Cancer Research, Sutton, Surrey, UK.
Abstract:
A base substitution in the mouse Dnd1 gene resulting in a truncated Dnd protein has been shown to be responsible for germ cell loss and the development of testicular germ cell tumors (TGCT) in the 129 strain of mice. We investigated the human orthologue of this gene in 263 patients (165 with a family history of TGCT and 98 without) and found a rare heterozygous variant, p. Glu86Ala, in a single case. This variant was not present in control chromosomes (0/4,132). Analysis of the variant in an additional 842 index TGCT cases (269 with a family history of TGCT and 573 without) did not reveal any additional instances. The variant, p. Glu86Ala, is within a known functional domain of DND1 and is highly conserved through evolution. Although the variant may be a rare polymorphism, a change at such a highly conserved residue is characteristic of a disease-causing variant. Whether it is disease-causing or not, mutations in DND1 make, at most, a very small contribution to TGCT susceptibility in adults and adolescents.
Keywords:
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