Journal article

Genetic dissection of spermatogenic arrest through exome analysis: clinical implications for the management of azoospermic men


Authors listKrausz, Csilla; Riera-Escamilla, Antoni; Moreno-Mendoza, Daniel; Holleman, Kaylee; Cioppi, Francesca; Algaba, Ferran; Pybus, Marc; Friedrich, Corinna; Wyrwoll, Margot J.; Casamonti, Elena; Pietroforte, Sara; Nagirnaja, Liina; Lopes, Alexandra M.; Kliesch, Sabine; Pilatz, Adrian; Carrell, Douglas T.; Conrad, Donald F.; Ars, Elisabet; Ruiz-Castane, Eduard; Aston, Kenneth, I; Baarends, Willy M.; Tuettelmann, Frank

Publication year2020

Pages1956-1966

JournalGenetics in Medicine

Volume number22

Issue number12

ISSN1098-3600

eISSN1530-0366

Open access statusGreen

DOI Linkhttps://doi.org/10.1038/s41436-020-0907-1

PublisherElsevier


Abstract
Purpose Azoospermia affects 1% of men and it can be the consequence of spermatogenic maturation arrest (MA). Although the etiology of MA is likely to be of genetic origin, only 13 genes have been reported as recurrent potential causes of MA. Methods Exome sequencing in 147 selected MA patients (discovery cohort and two validation cohorts). Results We found strong evidence for five novel genes likely responsible for MA (ADAD2,TERB1,SHOC1,MSH4, andRAD21L1), for which mouse knockout (KO) models are concordant with the human phenotype. Four of them were validated in the two independent MA cohorts. In addition, nine patients carried pathogenic variants in seven previously reported genes-TEX14,DMRT1,TEX11,SYCE1,MEIOB,MEI1, andSTAG3-allowing to upgrade the clinical significance of these genes for diagnostic purposes. Our meiotic studies provide novel insight into the functional consequences of the variants, supporting their pathogenic role. Conclusion Our findings contribute substantially to the development of a pre-testicular sperm extraction (TESE) prognostic gene panel. If properly validated, the genetic diagnosis of complete MA prior to surgical interventions is clinically relevant. Wider implications include the understanding of potential genetic links between nonobstructive azoospermia (NOA) and cancer predisposition, and between NOA and premature ovarian failure.



Citation Styles

Harvard Citation styleKrausz, C., Riera-Escamilla, A., Moreno-Mendoza, D., Holleman, K., Cioppi, F., Algaba, F., et al. (2020) Genetic dissection of spermatogenic arrest through exome analysis: clinical implications for the management of azoospermic men, Genetics in Medicine, 22(12), pp. 1956-1966. https://doi.org/10.1038/s41436-020-0907-1

APA Citation styleKrausz, C., Riera-Escamilla, A., Moreno-Mendoza, D., Holleman, K., Cioppi, F., Algaba, F., Pybus, M., Friedrich, C., Wyrwoll, M., Casamonti, E., Pietroforte, S., Nagirnaja, L., Lopes, A., Kliesch, S., Pilatz, A., Carrell, D., Conrad, D., Ars, E., Ruiz-Castane, E., ...Tuettelmann, F. (2020). Genetic dissection of spermatogenic arrest through exome analysis: clinical implications for the management of azoospermic men. Genetics in Medicine. 22(12), 1956-1966. https://doi.org/10.1038/s41436-020-0907-1



Keywords


azoospermiaCAUSATIVE MUTATIONSCHROMOSOMESmale infertilityMSH5SYNAPSIS

Last updated on 2025-10-06 at 11:14