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Cell surface fluctuations regulate early embryonic lineage sorting

In development, lineage segregation is coordinated in time and space. An important example is the mammalian inner cell mass, in which the primitive endoderm (PrE, founder of the yolk sac) physically segregates from the epiblast (EPI, founder of the fetus). While the molecular requirements have been...

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Autores principales: Yanagida, Ayaka, Corujo-Simon, Elena, Revell, Christopher K., Sahu, Preeti, Stirparo, Giuliano G., Aspalter, Irene M., Winkel, Alex K., Peters, Ruby, De Belly, Henry, Cassani, Davide A.D., Achouri, Sarra, Blumenfeld, Raphael, Franze, Kristian, Hannezo, Edouard, Paluch, Ewa K., Nichols, Jennifer, Chalut, Kevin J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8896887/
https://www.ncbi.nlm.nih.gov/pubmed/35196500
http://dx.doi.org/10.1016/j.cell.2022.01.022
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author Yanagida, Ayaka
Corujo-Simon, Elena
Revell, Christopher K.
Sahu, Preeti
Stirparo, Giuliano G.
Aspalter, Irene M.
Winkel, Alex K.
Peters, Ruby
De Belly, Henry
Cassani, Davide A.D.
Achouri, Sarra
Blumenfeld, Raphael
Franze, Kristian
Hannezo, Edouard
Paluch, Ewa K.
Nichols, Jennifer
Chalut, Kevin J.
author_facet Yanagida, Ayaka
Corujo-Simon, Elena
Revell, Christopher K.
Sahu, Preeti
Stirparo, Giuliano G.
Aspalter, Irene M.
Winkel, Alex K.
Peters, Ruby
De Belly, Henry
Cassani, Davide A.D.
Achouri, Sarra
Blumenfeld, Raphael
Franze, Kristian
Hannezo, Edouard
Paluch, Ewa K.
Nichols, Jennifer
Chalut, Kevin J.
author_sort Yanagida, Ayaka
collection PubMed
description In development, lineage segregation is coordinated in time and space. An important example is the mammalian inner cell mass, in which the primitive endoderm (PrE, founder of the yolk sac) physically segregates from the epiblast (EPI, founder of the fetus). While the molecular requirements have been well studied, the physical mechanisms determining spatial segregation between EPI and PrE remain elusive. Here, we investigate the mechanical basis of EPI and PrE sorting. We find that rather than the differences in static cell surface mechanical parameters as in classical sorting models, it is the differences in surface fluctuations that robustly ensure physical lineage sorting. These differential surface fluctuations systematically correlate with differential cellular fluidity, which we propose together constitute a non-equilibrium sorting mechanism for EPI and PrE lineages. By combining experiments and modeling, we identify cell surface dynamics as a key factor orchestrating the correct spatial segregation of the founder embryonic lineages.
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spelling pubmed-88968872022-03-10 Cell surface fluctuations regulate early embryonic lineage sorting Yanagida, Ayaka Corujo-Simon, Elena Revell, Christopher K. Sahu, Preeti Stirparo, Giuliano G. Aspalter, Irene M. Winkel, Alex K. Peters, Ruby De Belly, Henry Cassani, Davide A.D. Achouri, Sarra Blumenfeld, Raphael Franze, Kristian Hannezo, Edouard Paluch, Ewa K. Nichols, Jennifer Chalut, Kevin J. Cell Article In development, lineage segregation is coordinated in time and space. An important example is the mammalian inner cell mass, in which the primitive endoderm (PrE, founder of the yolk sac) physically segregates from the epiblast (EPI, founder of the fetus). While the molecular requirements have been well studied, the physical mechanisms determining spatial segregation between EPI and PrE remain elusive. Here, we investigate the mechanical basis of EPI and PrE sorting. We find that rather than the differences in static cell surface mechanical parameters as in classical sorting models, it is the differences in surface fluctuations that robustly ensure physical lineage sorting. These differential surface fluctuations systematically correlate with differential cellular fluidity, which we propose together constitute a non-equilibrium sorting mechanism for EPI and PrE lineages. By combining experiments and modeling, we identify cell surface dynamics as a key factor orchestrating the correct spatial segregation of the founder embryonic lineages. Cell Press 2022-03-03 /pmc/articles/PMC8896887/ /pubmed/35196500 http://dx.doi.org/10.1016/j.cell.2022.01.022 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yanagida, Ayaka
Corujo-Simon, Elena
Revell, Christopher K.
Sahu, Preeti
Stirparo, Giuliano G.
Aspalter, Irene M.
Winkel, Alex K.
Peters, Ruby
De Belly, Henry
Cassani, Davide A.D.
Achouri, Sarra
Blumenfeld, Raphael
Franze, Kristian
Hannezo, Edouard
Paluch, Ewa K.
Nichols, Jennifer
Chalut, Kevin J.
Cell surface fluctuations regulate early embryonic lineage sorting
title Cell surface fluctuations regulate early embryonic lineage sorting
title_full Cell surface fluctuations regulate early embryonic lineage sorting
title_fullStr Cell surface fluctuations regulate early embryonic lineage sorting
title_full_unstemmed Cell surface fluctuations regulate early embryonic lineage sorting
title_short Cell surface fluctuations regulate early embryonic lineage sorting
title_sort cell surface fluctuations regulate early embryonic lineage sorting
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8896887/
https://www.ncbi.nlm.nih.gov/pubmed/35196500
http://dx.doi.org/10.1016/j.cell.2022.01.022
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