Cargando…

Dynamic MAPK/ERK Activity Sustains Nephron Progenitors through Niche Regulation and Primes Precursors for Differentiation

The in vivo niche and basic cellular properties of nephron progenitors are poorly described. Here we studied the cellular organization and function of the MAPK/ERK pathway in nephron progenitors. Live-imaging of ERK activity by a Förster resonance energy transfer biosensor revealed a dynamic activat...

Descripción completa

Detalles Bibliográficos
Autores principales: Ihermann-Hella, Anneliis, Hirashima, Tsuyoshi, Kupari, Jussi, Kurtzeborn, Kristen, Li, Hao, Kwon, Hyuk Nam, Cebrian, Cristina, Soofi, Abdul, Dapkunas, Arvydas, Miinalainen, Ilkka, Dressler, Gregory R., Matsuda, Michiyuki, Kuure, Satu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6178244/
https://www.ncbi.nlm.nih.gov/pubmed/30220628
http://dx.doi.org/10.1016/j.stemcr.2018.08.012
_version_ 1783361931405426688
author Ihermann-Hella, Anneliis
Hirashima, Tsuyoshi
Kupari, Jussi
Kurtzeborn, Kristen
Li, Hao
Kwon, Hyuk Nam
Cebrian, Cristina
Soofi, Abdul
Dapkunas, Arvydas
Miinalainen, Ilkka
Dressler, Gregory R.
Matsuda, Michiyuki
Kuure, Satu
author_facet Ihermann-Hella, Anneliis
Hirashima, Tsuyoshi
Kupari, Jussi
Kurtzeborn, Kristen
Li, Hao
Kwon, Hyuk Nam
Cebrian, Cristina
Soofi, Abdul
Dapkunas, Arvydas
Miinalainen, Ilkka
Dressler, Gregory R.
Matsuda, Michiyuki
Kuure, Satu
author_sort Ihermann-Hella, Anneliis
collection PubMed
description The in vivo niche and basic cellular properties of nephron progenitors are poorly described. Here we studied the cellular organization and function of the MAPK/ERK pathway in nephron progenitors. Live-imaging of ERK activity by a Förster resonance energy transfer biosensor revealed a dynamic activation pattern in progenitors, whereas differentiating precursors exhibited sustained activity. Genetic experiments demonstrate that MAPK/ERK activity controls the thickness, coherence, and integrity of the nephron progenitor niche. Molecularly, MAPK/ERK activity regulates niche organization and communication with extracellular matrix through PAX2 and ITGA8, and is needed for CITED1 expression denoting undifferentiated status. MAPK/ERK activation in nephron precursors propels differentiation by priming cells for distal and proximal fates induced by the Wnt and Notch pathways. Thus, our results demonstrate a mechanism through which MAPK/ERK activity controls both progenitor maintenance and differentiation by regulating a distinct set of targets, which maintain the biomechanical milieu of tissue-residing progenitors and prime precursors for nephrogenesis.
format Online
Article
Text
id pubmed-6178244
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-61782442018-10-11 Dynamic MAPK/ERK Activity Sustains Nephron Progenitors through Niche Regulation and Primes Precursors for Differentiation Ihermann-Hella, Anneliis Hirashima, Tsuyoshi Kupari, Jussi Kurtzeborn, Kristen Li, Hao Kwon, Hyuk Nam Cebrian, Cristina Soofi, Abdul Dapkunas, Arvydas Miinalainen, Ilkka Dressler, Gregory R. Matsuda, Michiyuki Kuure, Satu Stem Cell Reports Article The in vivo niche and basic cellular properties of nephron progenitors are poorly described. Here we studied the cellular organization and function of the MAPK/ERK pathway in nephron progenitors. Live-imaging of ERK activity by a Förster resonance energy transfer biosensor revealed a dynamic activation pattern in progenitors, whereas differentiating precursors exhibited sustained activity. Genetic experiments demonstrate that MAPK/ERK activity controls the thickness, coherence, and integrity of the nephron progenitor niche. Molecularly, MAPK/ERK activity regulates niche organization and communication with extracellular matrix through PAX2 and ITGA8, and is needed for CITED1 expression denoting undifferentiated status. MAPK/ERK activation in nephron precursors propels differentiation by priming cells for distal and proximal fates induced by the Wnt and Notch pathways. Thus, our results demonstrate a mechanism through which MAPK/ERK activity controls both progenitor maintenance and differentiation by regulating a distinct set of targets, which maintain the biomechanical milieu of tissue-residing progenitors and prime precursors for nephrogenesis. Elsevier 2018-09-13 /pmc/articles/PMC6178244/ /pubmed/30220628 http://dx.doi.org/10.1016/j.stemcr.2018.08.012 Text en © 2018 The Author(s) http://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
Ihermann-Hella, Anneliis
Hirashima, Tsuyoshi
Kupari, Jussi
Kurtzeborn, Kristen
Li, Hao
Kwon, Hyuk Nam
Cebrian, Cristina
Soofi, Abdul
Dapkunas, Arvydas
Miinalainen, Ilkka
Dressler, Gregory R.
Matsuda, Michiyuki
Kuure, Satu
Dynamic MAPK/ERK Activity Sustains Nephron Progenitors through Niche Regulation and Primes Precursors for Differentiation
title Dynamic MAPK/ERK Activity Sustains Nephron Progenitors through Niche Regulation and Primes Precursors for Differentiation
title_full Dynamic MAPK/ERK Activity Sustains Nephron Progenitors through Niche Regulation and Primes Precursors for Differentiation
title_fullStr Dynamic MAPK/ERK Activity Sustains Nephron Progenitors through Niche Regulation and Primes Precursors for Differentiation
title_full_unstemmed Dynamic MAPK/ERK Activity Sustains Nephron Progenitors through Niche Regulation and Primes Precursors for Differentiation
title_short Dynamic MAPK/ERK Activity Sustains Nephron Progenitors through Niche Regulation and Primes Precursors for Differentiation
title_sort dynamic mapk/erk activity sustains nephron progenitors through niche regulation and primes precursors for differentiation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6178244/
https://www.ncbi.nlm.nih.gov/pubmed/30220628
http://dx.doi.org/10.1016/j.stemcr.2018.08.012
work_keys_str_mv AT ihermannhellaanneliis dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT hirashimatsuyoshi dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT kuparijussi dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT kurtzebornkristen dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT lihao dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT kwonhyuknam dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT cebriancristina dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT soofiabdul dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT dapkunasarvydas dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT miinalainenilkka dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT dresslergregoryr dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT matsudamichiyuki dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation
AT kuuresatu dynamicmapkerkactivitysustainsnephronprogenitorsthroughnicheregulationandprimesprecursorsfordifferentiation