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Hierarchical differentiation competence in response to retinoic acid ensures stem cell maintenance during mouse spermatogenesis

Stem cells ensure tissue homeostasis through the production of differentiating and self-renewing progeny. In some tissues, this is achieved by the function of a definitive stem cell niche. However, the mechanisms that operate in mouse spermatogenesis are unknown because undifferentiated spermatogoni...

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Autores principales: Ikami, Kanako, Tokue, Moe, Sugimoto, Ryo, Noda, Chiyo, Kobayashi, Satoru, Hara, Kenshiro, Yoshida, Shosei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4419276/
https://www.ncbi.nlm.nih.gov/pubmed/25858458
http://dx.doi.org/10.1242/dev.118695
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author Ikami, Kanako
Tokue, Moe
Sugimoto, Ryo
Noda, Chiyo
Kobayashi, Satoru
Hara, Kenshiro
Yoshida, Shosei
author_facet Ikami, Kanako
Tokue, Moe
Sugimoto, Ryo
Noda, Chiyo
Kobayashi, Satoru
Hara, Kenshiro
Yoshida, Shosei
author_sort Ikami, Kanako
collection PubMed
description Stem cells ensure tissue homeostasis through the production of differentiating and self-renewing progeny. In some tissues, this is achieved by the function of a definitive stem cell niche. However, the mechanisms that operate in mouse spermatogenesis are unknown because undifferentiated spermatogonia (A(undiff)) are motile and intermingle with differentiating cells in an ‘open’ niche environment of seminiferous tubules. A(undiff) include glial cell line-derived neurotrophic factor receptor α1 (GFRα1)(+) and neurogenin 3 (NGN3)(+) subpopulations, both of which retain the ability to self-renew. However, whereas GFRα1(+) cells comprise the homeostatic stem cell pool, NGN3(+) cells show a higher probability to differentiate into KIT(+) spermatogonia by as yet unknown mechanisms. In the present study, by combining fate analysis of pulse-labeled cells and a model of vitamin A deficiency, we demonstrate that retinoic acid (RA), which may periodically increase in concentration in the tubules during the seminiferous epithelial cycle, induced only NGN3(+) cells to differentiate. Comparison of gene expression revealed that retinoic acid receptor γ (Rarg) was predominantly expressed in NGN3(+) cells, but not in GFRα1(+) cells, whereas the expression levels of many other RA response-related genes were similar in the two populations. Ectopic expression of RARγ was sufficient to induce GFRα1(+) cells to directly differentiate to KIT(+) cells without transiting the NGN3(+) state. Therefore, RARγ plays key roles in the differentiation competence of NGN3(+) cells. We propose a novel mechanism of stem cell fate selection in an open niche environment whereby undifferentiated cells show heterogeneous competence to differentiate in response to ubiquitously distributed differentiation-inducing signals.
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spelling pubmed-44192762015-05-12 Hierarchical differentiation competence in response to retinoic acid ensures stem cell maintenance during mouse spermatogenesis Ikami, Kanako Tokue, Moe Sugimoto, Ryo Noda, Chiyo Kobayashi, Satoru Hara, Kenshiro Yoshida, Shosei Development Stem Cells and Regeneration Stem cells ensure tissue homeostasis through the production of differentiating and self-renewing progeny. In some tissues, this is achieved by the function of a definitive stem cell niche. However, the mechanisms that operate in mouse spermatogenesis are unknown because undifferentiated spermatogonia (A(undiff)) are motile and intermingle with differentiating cells in an ‘open’ niche environment of seminiferous tubules. A(undiff) include glial cell line-derived neurotrophic factor receptor α1 (GFRα1)(+) and neurogenin 3 (NGN3)(+) subpopulations, both of which retain the ability to self-renew. However, whereas GFRα1(+) cells comprise the homeostatic stem cell pool, NGN3(+) cells show a higher probability to differentiate into KIT(+) spermatogonia by as yet unknown mechanisms. In the present study, by combining fate analysis of pulse-labeled cells and a model of vitamin A deficiency, we demonstrate that retinoic acid (RA), which may periodically increase in concentration in the tubules during the seminiferous epithelial cycle, induced only NGN3(+) cells to differentiate. Comparison of gene expression revealed that retinoic acid receptor γ (Rarg) was predominantly expressed in NGN3(+) cells, but not in GFRα1(+) cells, whereas the expression levels of many other RA response-related genes were similar in the two populations. Ectopic expression of RARγ was sufficient to induce GFRα1(+) cells to directly differentiate to KIT(+) cells without transiting the NGN3(+) state. Therefore, RARγ plays key roles in the differentiation competence of NGN3(+) cells. We propose a novel mechanism of stem cell fate selection in an open niche environment whereby undifferentiated cells show heterogeneous competence to differentiate in response to ubiquitously distributed differentiation-inducing signals. The Company of Biologists 2015-05-01 /pmc/articles/PMC4419276/ /pubmed/25858458 http://dx.doi.org/10.1242/dev.118695 Text en © 2015. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Stem Cells and Regeneration
Ikami, Kanako
Tokue, Moe
Sugimoto, Ryo
Noda, Chiyo
Kobayashi, Satoru
Hara, Kenshiro
Yoshida, Shosei
Hierarchical differentiation competence in response to retinoic acid ensures stem cell maintenance during mouse spermatogenesis
title Hierarchical differentiation competence in response to retinoic acid ensures stem cell maintenance during mouse spermatogenesis
title_full Hierarchical differentiation competence in response to retinoic acid ensures stem cell maintenance during mouse spermatogenesis
title_fullStr Hierarchical differentiation competence in response to retinoic acid ensures stem cell maintenance during mouse spermatogenesis
title_full_unstemmed Hierarchical differentiation competence in response to retinoic acid ensures stem cell maintenance during mouse spermatogenesis
title_short Hierarchical differentiation competence in response to retinoic acid ensures stem cell maintenance during mouse spermatogenesis
title_sort hierarchical differentiation competence in response to retinoic acid ensures stem cell maintenance during mouse spermatogenesis
topic Stem Cells and Regeneration
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4419276/
https://www.ncbi.nlm.nih.gov/pubmed/25858458
http://dx.doi.org/10.1242/dev.118695
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