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Single-cell RNA-seq unravels alterations of the human spermatogonial stem cell compartment in patients with impaired spermatogenesis

Despite the high incidence of male infertility, only 30% of infertile men receive a causative diagnosis. To explore the regulatory mechanisms governing human germ cell function in normal and impaired spermatogenesis (crypto), we performed single-cell RNA sequencing (>30,000 cells). We find major...

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Autores principales: Di Persio, Sara, Tekath, Tobias, Siebert-Kuss, Lara Marie, Cremers, Jann-Frederik, Wistuba, Joachim, Li, Xiaolin, Meyer zu Hörste, Gerd, Drexler, Hannes C.A., Wyrwoll, Margot Julia, Tüttelmann, Frank, Dugas, Martin, Kliesch, Sabine, Schlatt, Stefan, Laurentino, Sandra, Neuhaus, Nina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8484693/
https://www.ncbi.nlm.nih.gov/pubmed/34622232
http://dx.doi.org/10.1016/j.xcrm.2021.100395
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author Di Persio, Sara
Tekath, Tobias
Siebert-Kuss, Lara Marie
Cremers, Jann-Frederik
Wistuba, Joachim
Li, Xiaolin
Meyer zu Hörste, Gerd
Drexler, Hannes C.A.
Wyrwoll, Margot Julia
Tüttelmann, Frank
Dugas, Martin
Kliesch, Sabine
Schlatt, Stefan
Laurentino, Sandra
Neuhaus, Nina
author_facet Di Persio, Sara
Tekath, Tobias
Siebert-Kuss, Lara Marie
Cremers, Jann-Frederik
Wistuba, Joachim
Li, Xiaolin
Meyer zu Hörste, Gerd
Drexler, Hannes C.A.
Wyrwoll, Margot Julia
Tüttelmann, Frank
Dugas, Martin
Kliesch, Sabine
Schlatt, Stefan
Laurentino, Sandra
Neuhaus, Nina
author_sort Di Persio, Sara
collection PubMed
description Despite the high incidence of male infertility, only 30% of infertile men receive a causative diagnosis. To explore the regulatory mechanisms governing human germ cell function in normal and impaired spermatogenesis (crypto), we performed single-cell RNA sequencing (>30,000 cells). We find major alterations in the crypto spermatogonial compartment with increased numbers of the most undifferentiated spermatogonia (PIWIL4(+)). We also observe a transcriptional switch within the spermatogonial compartment driven by increased and prolonged expression of the transcription factor EGR4. Intriguingly, the EGR4-regulated chromatin-associated transcriptional repressor UTF1 is downregulated at transcriptional and protein levels. This is associated with changes in spermatogonial chromatin structure and fewer A(dark) spermatogonia, characterized by tightly compacted chromatin and serving as reserve stem cells. These findings suggest that crypto patients are disadvantaged, as fewer cells safeguard their germline’s genetic integrity. These identified spermatogonial regulators will be highly interesting targets to uncover genetic causes of male infertility.
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spelling pubmed-84846932021-10-06 Single-cell RNA-seq unravels alterations of the human spermatogonial stem cell compartment in patients with impaired spermatogenesis Di Persio, Sara Tekath, Tobias Siebert-Kuss, Lara Marie Cremers, Jann-Frederik Wistuba, Joachim Li, Xiaolin Meyer zu Hörste, Gerd Drexler, Hannes C.A. Wyrwoll, Margot Julia Tüttelmann, Frank Dugas, Martin Kliesch, Sabine Schlatt, Stefan Laurentino, Sandra Neuhaus, Nina Cell Rep Med Article Despite the high incidence of male infertility, only 30% of infertile men receive a causative diagnosis. To explore the regulatory mechanisms governing human germ cell function in normal and impaired spermatogenesis (crypto), we performed single-cell RNA sequencing (>30,000 cells). We find major alterations in the crypto spermatogonial compartment with increased numbers of the most undifferentiated spermatogonia (PIWIL4(+)). We also observe a transcriptional switch within the spermatogonial compartment driven by increased and prolonged expression of the transcription factor EGR4. Intriguingly, the EGR4-regulated chromatin-associated transcriptional repressor UTF1 is downregulated at transcriptional and protein levels. This is associated with changes in spermatogonial chromatin structure and fewer A(dark) spermatogonia, characterized by tightly compacted chromatin and serving as reserve stem cells. These findings suggest that crypto patients are disadvantaged, as fewer cells safeguard their germline’s genetic integrity. These identified spermatogonial regulators will be highly interesting targets to uncover genetic causes of male infertility. Elsevier 2021-09-09 /pmc/articles/PMC8484693/ /pubmed/34622232 http://dx.doi.org/10.1016/j.xcrm.2021.100395 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Di Persio, Sara
Tekath, Tobias
Siebert-Kuss, Lara Marie
Cremers, Jann-Frederik
Wistuba, Joachim
Li, Xiaolin
Meyer zu Hörste, Gerd
Drexler, Hannes C.A.
Wyrwoll, Margot Julia
Tüttelmann, Frank
Dugas, Martin
Kliesch, Sabine
Schlatt, Stefan
Laurentino, Sandra
Neuhaus, Nina
Single-cell RNA-seq unravels alterations of the human spermatogonial stem cell compartment in patients with impaired spermatogenesis
title Single-cell RNA-seq unravels alterations of the human spermatogonial stem cell compartment in patients with impaired spermatogenesis
title_full Single-cell RNA-seq unravels alterations of the human spermatogonial stem cell compartment in patients with impaired spermatogenesis
title_fullStr Single-cell RNA-seq unravels alterations of the human spermatogonial stem cell compartment in patients with impaired spermatogenesis
title_full_unstemmed Single-cell RNA-seq unravels alterations of the human spermatogonial stem cell compartment in patients with impaired spermatogenesis
title_short Single-cell RNA-seq unravels alterations of the human spermatogonial stem cell compartment in patients with impaired spermatogenesis
title_sort single-cell rna-seq unravels alterations of the human spermatogonial stem cell compartment in patients with impaired spermatogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8484693/
https://www.ncbi.nlm.nih.gov/pubmed/34622232
http://dx.doi.org/10.1016/j.xcrm.2021.100395
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