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Published in: Familial Cancer 3/2010

Open Access 01-09-2010

Screening for germline DND1 mutations in testicular cancer patients

Authors: Rolf H. Sijmons, Yvonne J. Vos, Johanna C. Herkert, Krista K. Bos, Martijn F. Lutke Holzik, Josette E. H. M. Hoekstra-Weebers, Robert M. W. Hofstra, Harald J. Hoekstra

Published in: Familial Cancer | Issue 3/2010

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Abstract

Although several observations suggest that a strong genetic predisposition to developing testicular germ cell tumors (TGCT) exists, no associated, highly penetrant germline mutations have been identified so far. In the 129/Sv mouse strain, a germline mutation in the DND1 gene has been shown to strongly increase the TGCT risk. We screened 272 men with TGCT (89% sporadic cases, 11% familial) for germline mutations in the human homologue of DND1. A single nucleotide substitution c.657C > G (p.Asp219Glu) was observed in a non-familial case of testicular embryonal carcinoma. The variant was also present in the patient’s asymptomatic father and two brothers, but not observed in 210 control chromosomes. The wild type DND1 allele was not lost in the patient’s tumor. In silico analysis of the variant predicts it to be non-pathogenic. We conclude that germline DND1 mutations are unlikely to contribute significantly to human testicular germ cell tumor susceptibility. The role of human DND1 in normal physiology and disease, however, is still virtually unknown and it therefore warrants further research.
Literature
1.
go back to reference Lutke Holzik MF, Rapley EA, Hoekstra HJ et al (2004) Genetic predisposition to testicular germ-cell tumours. Lancet Oncol 5(6):363–371CrossRefPubMed Lutke Holzik MF, Rapley EA, Hoekstra HJ et al (2004) Genetic predisposition to testicular germ-cell tumours. Lancet Oncol 5(6):363–371CrossRefPubMed
2.
go back to reference Rapley EA, Turnbull C, Al Olama AA et al (2009) A genome-wide association study of testicular germ cell tumor. Nat Genet 41:807–810CrossRefPubMed Rapley EA, Turnbull C, Al Olama AA et al (2009) A genome-wide association study of testicular germ cell tumor. Nat Genet 41:807–810CrossRefPubMed
3.
go back to reference Rapley EA, Crockford GP, Teare D et al (2000) Localization to Xq27 of a susceptibility gene for testicular germ-cell tumours. Nat Genet 24(2):197–200CrossRefPubMed Rapley EA, Crockford GP, Teare D et al (2000) Localization to Xq27 of a susceptibility gene for testicular germ-cell tumours. Nat Genet 24(2):197–200CrossRefPubMed
4.
go back to reference Sonneveld DJ, Lutke Holzik MF, Nolte IM et al (2002) Testicular carcinoma and HLA Class II genes. Cancer 95(9):1857–1863CrossRefPubMed Sonneveld DJ, Lutke Holzik MF, Nolte IM et al (2002) Testicular carcinoma and HLA Class II genes. Cancer 95(9):1857–1863CrossRefPubMed
5.
go back to reference Nathanson KL, Kanetsky PA, Hawes R et al (2005) The Y deletion gr/gr and susceptibility to testicular germ cell tumor. Am J Hum Genet 77(6):1034–1043CrossRefPubMed Nathanson KL, Kanetsky PA, Hawes R et al (2005) The Y deletion gr/gr and susceptibility to testicular germ cell tumor. Am J Hum Genet 77(6):1034–1043CrossRefPubMed
6.
go back to reference Crockford GP, Linger R, Hockley S et al (2006) Genome-wide linkage screen for testicular germ cell tumour susceptibility loci. Hum Mol Genet 15(3):443–451CrossRefPubMed Crockford GP, Linger R, Hockley S et al (2006) Genome-wide linkage screen for testicular germ cell tumour susceptibility loci. Hum Mol Genet 15(3):443–451CrossRefPubMed
7.
go back to reference Lutke Holzik MF, Hoekstra HJ, Sijmons RH (2006) Re-analysis of the Xq27-Xq28 region suggests a weak association of an X-linked gene with sporadic testicular germ cell tumour without cryptorchidism. Eur J Cancer 42(12):1869–1874CrossRefPubMed Lutke Holzik MF, Hoekstra HJ, Sijmons RH (2006) Re-analysis of the Xq27-Xq28 region suggests a weak association of an X-linked gene with sporadic testicular germ cell tumour without cryptorchidism. Eur J Cancer 42(12):1869–1874CrossRefPubMed
8.
go back to reference Youngren KK, Coveney D, Peng X et al (2005) The Ter mutation in the dead end gene causes germ cell loss and testicular germ cell tumours. Nature 435(7040):360–364CrossRefPubMed Youngren KK, Coveney D, Peng X et al (2005) The Ter mutation in the dead end gene causes germ cell loss and testicular germ cell tumours. Nature 435(7040):360–364CrossRefPubMed
9.
go back to reference Looijenga LH, Oosterhuis JW (1999) Pathogenesis of testicular germ cell tumours. Rev Reprod. 4(2):90–100CrossRefPubMed Looijenga LH, Oosterhuis JW (1999) Pathogenesis of testicular germ cell tumours. Rev Reprod. 4(2):90–100CrossRefPubMed
10.
go back to reference Zhu R, Bhattacharya C, Matin A (2007) The role of dead-end in germ-cell tumor development. Ann N Y Acad Sci 1120:181–186CrossRefPubMed Zhu R, Bhattacharya C, Matin A (2007) The role of dead-end in germ-cell tumor development. Ann N Y Acad Sci 1120:181–186CrossRefPubMed
11.
go back to reference Linger R, Dudakia D, Huddart R et al (2008) Analysis of the DND1 gene in men with sporadic and familial testicular germ cell tumors. Genes Chromosomes Cancer 47(3):247–252CrossRefPubMed Linger R, Dudakia D, Huddart R et al (2008) Analysis of the DND1 gene in men with sporadic and familial testicular germ cell tumors. Genes Chromosomes Cancer 47(3):247–252CrossRefPubMed
12.
go back to reference Hayes VM, Wu Y, Osinga J et al (1999) Improvements in gel composition and electrophoretic conditions for broad-range mutation analysis by denaturing gradient gel electrophoresis. Nucleic Acids Res 27:e29CrossRefPubMed Hayes VM, Wu Y, Osinga J et al (1999) Improvements in gel composition and electrophoretic conditions for broad-range mutation analysis by denaturing gradient gel electrophoresis. Nucleic Acids Res 27:e29CrossRefPubMed
13.
go back to reference Su AI, Wiltshire T, Batalov S et al (2004) A gene atlas of the mouse and human protein-encoding transcriptomes. Proc Natl Acad Sci U S A 101(16):6062–6067CrossRefPubMed Su AI, Wiltshire T, Batalov S et al (2004) A gene atlas of the mouse and human protein-encoding transcriptomes. Proc Natl Acad Sci U S A 101(16):6062–6067CrossRefPubMed
17.
go back to reference Kedde M, Strasser MJ, Boldajipour B et al (2007) RNA-binding protein Dnd1 inhibits microRNA access to target mRNA. Cell 131(7):1273–1286CrossRefPubMed Kedde M, Strasser MJ, Boldajipour B et al (2007) RNA-binding protein Dnd1 inhibits microRNA access to target mRNA. Cell 131(7):1273–1286CrossRefPubMed
18.
go back to reference Hammond S, Zhu R, Youngren KK et al (2007) Chromosome X modulates incidence of testicular germ cell tumors in Ter mice. Mamm Genome. 18(12):832–838CrossRefPubMed Hammond S, Zhu R, Youngren KK et al (2007) Chromosome X modulates incidence of testicular germ cell tumors in Ter mice. Mamm Genome. 18(12):832–838CrossRefPubMed
19.
go back to reference Lam MY, Heaney JD, Youngren KK (2007) Trans-generational epistasis between Dnd1Ter and other modifier genes controls susceptibility to testicular germ cell tumors. Hum Mol Genet 16(18):2233–2240CrossRefPubMed Lam MY, Heaney JD, Youngren KK (2007) Trans-generational epistasis between Dnd1Ter and other modifier genes controls susceptibility to testicular germ cell tumors. Hum Mol Genet 16(18):2233–2240CrossRefPubMed
Metadata
Title
Screening for germline DND1 mutations in testicular cancer patients
Authors
Rolf H. Sijmons
Yvonne J. Vos
Johanna C. Herkert
Krista K. Bos
Martijn F. Lutke Holzik
Josette E. H. M. Hoekstra-Weebers
Robert M. W. Hofstra
Harald J. Hoekstra
Publication date
01-09-2010
Publisher
Springer Netherlands
Published in
Familial Cancer / Issue 3/2010
Print ISSN: 1389-9600
Electronic ISSN: 1573-7292
DOI
https://doi.org/10.1007/s10689-010-9340-y

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