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A Novel Transcriptional Factor Nkapl Is a Germ Cell-Specific Suppressor of Notch Signaling and Is Indispensable for Spermatogenesis

Spermatogenesis is an elaborately regulated system dedicated to the continuous production of spermatozoa via the genesis of spermatogonia. In this process, a variety of genes are expressed that are relevant to the differentiation of germ cells at each stage. Although Notch signaling plays a critical...

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Autores principales: Okuda, Hidenobu, Kiuchi, Hiroshi, Takao, Tetsuya, Miyagawa, Yasushi, Tsujimura, Akira, Nonomura, Norio, Miyata, Haruhiko, Okabe, Masaru, Ikawa, Masahito, Kawakami, Yoshitaka, Goshima, Naoki, Wada, Morimasa, Tanaka, Hiromitsu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4397068/
https://www.ncbi.nlm.nih.gov/pubmed/25875095
http://dx.doi.org/10.1371/journal.pone.0124293
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author Okuda, Hidenobu
Kiuchi, Hiroshi
Takao, Tetsuya
Miyagawa, Yasushi
Tsujimura, Akira
Nonomura, Norio
Miyata, Haruhiko
Okabe, Masaru
Ikawa, Masahito
Kawakami, Yoshitaka
Goshima, Naoki
Wada, Morimasa
Tanaka, Hiromitsu
author_facet Okuda, Hidenobu
Kiuchi, Hiroshi
Takao, Tetsuya
Miyagawa, Yasushi
Tsujimura, Akira
Nonomura, Norio
Miyata, Haruhiko
Okabe, Masaru
Ikawa, Masahito
Kawakami, Yoshitaka
Goshima, Naoki
Wada, Morimasa
Tanaka, Hiromitsu
author_sort Okuda, Hidenobu
collection PubMed
description Spermatogenesis is an elaborately regulated system dedicated to the continuous production of spermatozoa via the genesis of spermatogonia. In this process, a variety of genes are expressed that are relevant to the differentiation of germ cells at each stage. Although Notch signaling plays a critical role in germ cell development in Drosophila and Caenorhabditis elegans, its function and importance for spermatogenesis in mammals is controversial. We report that Nkapl is a novel germ cell-specific transcriptional suppressor in Notch signaling. It is also associated with several molecules of the Notch corepressor complex such as CIR, HDAC3, and CSL. It was expressed robustly in spermatogonia and early spermatocytes after the age of 3 weeks. Nkapl-deleted mice showed complete arrest at the level of pachytene spermatocytes. In addition, apoptosis was observed in this cell type. Overexpression of NKAPL in germline stem cells demonstrated that Nkapl induced changes in spermatogonial stem cell (SSC) markers and the reduction of differentiation factors through the Notch signaling pathway, whereas testes with Nkapl deleted showed inverse changes in those markers and factors. Therefore, Nkapl is indispensable because aberrantly elevated Notch signaling has negative effects on spermatogenesis, affecting SSC maintenance and differentiation factors. Notch signaling should be properly regulated through the transcriptional factor Nkapl.
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spelling pubmed-43970682015-04-21 A Novel Transcriptional Factor Nkapl Is a Germ Cell-Specific Suppressor of Notch Signaling and Is Indispensable for Spermatogenesis Okuda, Hidenobu Kiuchi, Hiroshi Takao, Tetsuya Miyagawa, Yasushi Tsujimura, Akira Nonomura, Norio Miyata, Haruhiko Okabe, Masaru Ikawa, Masahito Kawakami, Yoshitaka Goshima, Naoki Wada, Morimasa Tanaka, Hiromitsu PLoS One Research Article Spermatogenesis is an elaborately regulated system dedicated to the continuous production of spermatozoa via the genesis of spermatogonia. In this process, a variety of genes are expressed that are relevant to the differentiation of germ cells at each stage. Although Notch signaling plays a critical role in germ cell development in Drosophila and Caenorhabditis elegans, its function and importance for spermatogenesis in mammals is controversial. We report that Nkapl is a novel germ cell-specific transcriptional suppressor in Notch signaling. It is also associated with several molecules of the Notch corepressor complex such as CIR, HDAC3, and CSL. It was expressed robustly in spermatogonia and early spermatocytes after the age of 3 weeks. Nkapl-deleted mice showed complete arrest at the level of pachytene spermatocytes. In addition, apoptosis was observed in this cell type. Overexpression of NKAPL in germline stem cells demonstrated that Nkapl induced changes in spermatogonial stem cell (SSC) markers and the reduction of differentiation factors through the Notch signaling pathway, whereas testes with Nkapl deleted showed inverse changes in those markers and factors. Therefore, Nkapl is indispensable because aberrantly elevated Notch signaling has negative effects on spermatogenesis, affecting SSC maintenance and differentiation factors. Notch signaling should be properly regulated through the transcriptional factor Nkapl. Public Library of Science 2015-04-14 /pmc/articles/PMC4397068/ /pubmed/25875095 http://dx.doi.org/10.1371/journal.pone.0124293 Text en © 2015 Okuda et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Okuda, Hidenobu
Kiuchi, Hiroshi
Takao, Tetsuya
Miyagawa, Yasushi
Tsujimura, Akira
Nonomura, Norio
Miyata, Haruhiko
Okabe, Masaru
Ikawa, Masahito
Kawakami, Yoshitaka
Goshima, Naoki
Wada, Morimasa
Tanaka, Hiromitsu
A Novel Transcriptional Factor Nkapl Is a Germ Cell-Specific Suppressor of Notch Signaling and Is Indispensable for Spermatogenesis
title A Novel Transcriptional Factor Nkapl Is a Germ Cell-Specific Suppressor of Notch Signaling and Is Indispensable for Spermatogenesis
title_full A Novel Transcriptional Factor Nkapl Is a Germ Cell-Specific Suppressor of Notch Signaling and Is Indispensable for Spermatogenesis
title_fullStr A Novel Transcriptional Factor Nkapl Is a Germ Cell-Specific Suppressor of Notch Signaling and Is Indispensable for Spermatogenesis
title_full_unstemmed A Novel Transcriptional Factor Nkapl Is a Germ Cell-Specific Suppressor of Notch Signaling and Is Indispensable for Spermatogenesis
title_short A Novel Transcriptional Factor Nkapl Is a Germ Cell-Specific Suppressor of Notch Signaling and Is Indispensable for Spermatogenesis
title_sort novel transcriptional factor nkapl is a germ cell-specific suppressor of notch signaling and is indispensable for spermatogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4397068/
https://www.ncbi.nlm.nih.gov/pubmed/25875095
http://dx.doi.org/10.1371/journal.pone.0124293
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