Cargando…

SPRY4-dependent ERK negative feedback demarcates functional adult stem cells in the male mouse germline

Niche-derived growth factors support self-renewal of mouse spermatogonial stem and progenitor cells through ERK MAPK signaling and other pathways. At the same time, dysregulated growth factor-dependent signaling has been associated with loss of stem cell activity and aberrant differentiation. We hyp...

Descripción completa

Detalles Bibliográficos
Autores principales: Luo, Yanyun, Yamada, Makiko, N’Tumba-Byn, Thierry, Asif, Hana, Gao, Meng, Hu, Yang, Marangoni, Pauline, Liu, Ying, Evans, Todd, Rafii, Shahin, Klein, Ophir D, Voss, Henning U, Hadjantonakis, Anna-Katerina, Elemento, Olivier, Martin, Laura A, Seandel, Marco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10577279/
https://www.ncbi.nlm.nih.gov/pubmed/37552049
http://dx.doi.org/10.1093/biolre/ioad089
_version_ 1785121291333795840
author Luo, Yanyun
Yamada, Makiko
N’Tumba-Byn, Thierry
Asif, Hana
Gao, Meng
Hu, Yang
Marangoni, Pauline
Liu, Ying
Evans, Todd
Rafii, Shahin
Klein, Ophir D
Voss, Henning U
Hadjantonakis, Anna-Katerina
Elemento, Olivier
Martin, Laura A
Seandel, Marco
author_facet Luo, Yanyun
Yamada, Makiko
N’Tumba-Byn, Thierry
Asif, Hana
Gao, Meng
Hu, Yang
Marangoni, Pauline
Liu, Ying
Evans, Todd
Rafii, Shahin
Klein, Ophir D
Voss, Henning U
Hadjantonakis, Anna-Katerina
Elemento, Olivier
Martin, Laura A
Seandel, Marco
author_sort Luo, Yanyun
collection PubMed
description Niche-derived growth factors support self-renewal of mouse spermatogonial stem and progenitor cells through ERK MAPK signaling and other pathways. At the same time, dysregulated growth factor-dependent signaling has been associated with loss of stem cell activity and aberrant differentiation. We hypothesized that growth factor signaling through the ERK MAPK pathway in spermatogonial stem cells is tightly regulated within a narrow range through distinct intracellular negative feedback regulators. Evaluation of candidate extracellular signal-regulated kinase (ERK) mitogen-activated protein kinase (MAPK)-responsive genes known to dampen downstream signaling revealed robust induction of specific negative feedback regulators, including Spry4, in cultured mouse spermatogonial stem cells in response to glial cell line-derived neurotrophic factor or fibroblast growth factor 2. Undifferentiated spermatogonia in vivo exhibited high levels of Spry4 mRNA. Quantitative single-cell analysis of ERK MAPK signaling in spermatogonial stem cell cultures revealed both dynamic signaling patterns in response to growth factors and disruption of such effects when Spry4 was ablated, due to dysregulation of ERK MAPK downstream of RAS. Whereas negative feedback regulator expression decreased during differentiation, loss of Spry4 shifted cell fate toward early differentiation with concomitant loss of stem cell activity. Finally, a mouse Spry4 reporter line revealed that the adult spermatogonial stem cell population in vivo is demarcated by strong Spry4 promoter activity. Collectively, our data suggest that negative feedback-dependent regulation of ERK MAPK is critical for preservation of spermatogonial stem cell fate within the mammalian testis.
format Online
Article
Text
id pubmed-10577279
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-105772792023-10-17 SPRY4-dependent ERK negative feedback demarcates functional adult stem cells in the male mouse germline Luo, Yanyun Yamada, Makiko N’Tumba-Byn, Thierry Asif, Hana Gao, Meng Hu, Yang Marangoni, Pauline Liu, Ying Evans, Todd Rafii, Shahin Klein, Ophir D Voss, Henning U Hadjantonakis, Anna-Katerina Elemento, Olivier Martin, Laura A Seandel, Marco Biol Reprod Research Article Niche-derived growth factors support self-renewal of mouse spermatogonial stem and progenitor cells through ERK MAPK signaling and other pathways. At the same time, dysregulated growth factor-dependent signaling has been associated with loss of stem cell activity and aberrant differentiation. We hypothesized that growth factor signaling through the ERK MAPK pathway in spermatogonial stem cells is tightly regulated within a narrow range through distinct intracellular negative feedback regulators. Evaluation of candidate extracellular signal-regulated kinase (ERK) mitogen-activated protein kinase (MAPK)-responsive genes known to dampen downstream signaling revealed robust induction of specific negative feedback regulators, including Spry4, in cultured mouse spermatogonial stem cells in response to glial cell line-derived neurotrophic factor or fibroblast growth factor 2. Undifferentiated spermatogonia in vivo exhibited high levels of Spry4 mRNA. Quantitative single-cell analysis of ERK MAPK signaling in spermatogonial stem cell cultures revealed both dynamic signaling patterns in response to growth factors and disruption of such effects when Spry4 was ablated, due to dysregulation of ERK MAPK downstream of RAS. Whereas negative feedback regulator expression decreased during differentiation, loss of Spry4 shifted cell fate toward early differentiation with concomitant loss of stem cell activity. Finally, a mouse Spry4 reporter line revealed that the adult spermatogonial stem cell population in vivo is demarcated by strong Spry4 promoter activity. Collectively, our data suggest that negative feedback-dependent regulation of ERK MAPK is critical for preservation of spermatogonial stem cell fate within the mammalian testis. Oxford University Press 2023-08-08 /pmc/articles/PMC10577279/ /pubmed/37552049 http://dx.doi.org/10.1093/biolre/ioad089 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Society for the Study of Reproduction. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Article
Luo, Yanyun
Yamada, Makiko
N’Tumba-Byn, Thierry
Asif, Hana
Gao, Meng
Hu, Yang
Marangoni, Pauline
Liu, Ying
Evans, Todd
Rafii, Shahin
Klein, Ophir D
Voss, Henning U
Hadjantonakis, Anna-Katerina
Elemento, Olivier
Martin, Laura A
Seandel, Marco
SPRY4-dependent ERK negative feedback demarcates functional adult stem cells in the male mouse germline
title SPRY4-dependent ERK negative feedback demarcates functional adult stem cells in the male mouse germline
title_full SPRY4-dependent ERK negative feedback demarcates functional adult stem cells in the male mouse germline
title_fullStr SPRY4-dependent ERK negative feedback demarcates functional adult stem cells in the male mouse germline
title_full_unstemmed SPRY4-dependent ERK negative feedback demarcates functional adult stem cells in the male mouse germline
title_short SPRY4-dependent ERK negative feedback demarcates functional adult stem cells in the male mouse germline
title_sort spry4-dependent erk negative feedback demarcates functional adult stem cells in the male mouse germline
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10577279/
https://www.ncbi.nlm.nih.gov/pubmed/37552049
http://dx.doi.org/10.1093/biolre/ioad089
work_keys_str_mv AT luoyanyun spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT yamadamakiko spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT ntumbabynthierry spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT asifhana spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT gaomeng spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT huyang spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT marangonipauline spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT liuying spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT evanstodd spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT rafiishahin spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT kleinophird spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT vosshenningu spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT hadjantonakisannakaterina spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT elementoolivier spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT martinlauraa spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline
AT seandelmarco spry4dependenterknegativefeedbackdemarcatesfunctionaladultstemcellsinthemalemousegermline