Utilize este identificador para referenciar este registo: http://hdl.handle.net/10362/147236
Título: Diverse monogenic subforms of human spermatogenic failure
Autor: Nagirnaja, Liina
Lopes, Alexandra M.
Charng, Wu Lin
Miller, Brian
Stakaitis, Rytis
Golubickaite, Ieva
Stendahl, Alexandra
Luan, Tianpengcheng
Friedrich, Corinna
Mahyari, Eisa
Fadial, Eloise
Kasak, Laura
Vigh-Conrad, Katinka
Oud, Manon S.
Xavier, Miguel
Cheers, Samuel R.
James, Emma R.
Guo, Jingtao
Jenkins, Timothy G.
Riera-Escamilla, Antoni
Barros, Alberto
Carvalho, Filipa
Fernandes, Susana
Gonçalves, João
Gurnett, Christina A.
Jørgensen, Niels
Jezek, Davor
Jungheim, Emily S.
Kliesch, Sabine
McLachlan, Robert I.
Omurtag, Kenan R.
Pilatz, Adrian
Sandlow, Jay I.
Smith, James
Eisenberg, Michael L.
Hotaling, James M.
Jarvi, Keith A.
Punab, Margus
Rajpert-De Meyts, Ewa
Carrell, Douglas T.
Krausz, Csilla
Laan, Maris
O'Bryan, Moira K.
Schlegel, Peter N.
Tüttelmann, Frank
Veltman, Joris A.
Almstrup, Kristian
Aston, Kenneth I.
Conrad, Donald F.
Palavras-chave: Chemistry(all)
Biochemistry, Genetics and Molecular Biology(all)
General
Physics and Astronomy(all)
SDG 3 - Good Health and Well-being
Data: 26-Dez-2022
Resumo: Non-obstructive azoospermia (NOA) is the most severe form of male infertility and typically incurable. Defining the genetic basis of NOA has proven challenging, and the most advanced classification of NOA subforms is not based on genetics, but simple description of testis histology. In this study, we exome-sequenced over 1000 clinically diagnosed NOA cases and identified a plausible recessive Mendelian cause in 20%. We find further support for 21 genes in a 2-stage burden test with 2072 cases and 11,587 fertile controls. The disrupted genes are primarily on the autosomes, enriched for undescribed human "knockouts", and, for the most part, have yet to be linked to a Mendelian trait. Integration with single-cell RNA sequencing data shows that azoospermia genes can be grouped into molecular subforms with synchronized expression patterns, and analogs of these subforms exist in mice. This analysis framework identifies groups of genes with known roles in spermatogenesis but also reveals unrecognized subforms, such as a set of genes expressed across mitotic divisions of differentiating spermatogonia. Our findings highlight NOA as an understudied Mendelian disorder and provide a conceptual structure for organizing the complex genetics of male infertility, which may provide a rational basis for disease classification.
Peer review: yes
URI: http://hdl.handle.net/10362/147236
DOI: https://doi.org/10.1038/s41467-022-35661-z
ISSN: 2041-1723
Aparece nas colecções:NMS: ToxOmics - Artigos em revista internacional com arbitragem científica

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