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Mammalian embryo comparison identifies novel pluripotency genes associated with the naïve or primed state

During early mammalian development, transient pools of pluripotent cells emerge that can be immortalised upon stem cell derivation. The pluripotent state, ‘naïve’ or ‘primed’, depends on the embryonic stage and derivation conditions used. Here we analyse the temporal gene expression patterns of mous...

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Autores principales: Bernardo, Andreia S., Jouneau, Alice, Marks, Hendrik, Kensche, Philip, Kobolak, Julianna, Freude, Kristine, Hall, Vanessa, Feher, Anita, Polgar, Zsuzsanna, Sartori, Chiara, Bock, Istvan, Louet, Claire, Faial, Tiago, Kerstens, Hindrik H. D., Bouissou, Camille, Parsonage, Gregory, Mashayekhi, Kaveh, Smith, James C., Lazzari, Giovanna, Hyttel, Poul, Stunnenberg, Hendrik G., Huynen, Martijn, Pedersen, Roger A., Dinnyes, Andras
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6124576/
https://www.ncbi.nlm.nih.gov/pubmed/30026265
http://dx.doi.org/10.1242/bio.033282
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author Bernardo, Andreia S.
Jouneau, Alice
Marks, Hendrik
Kensche, Philip
Kobolak, Julianna
Freude, Kristine
Hall, Vanessa
Feher, Anita
Polgar, Zsuzsanna
Sartori, Chiara
Bock, Istvan
Louet, Claire
Faial, Tiago
Kerstens, Hindrik H. D.
Bouissou, Camille
Parsonage, Gregory
Mashayekhi, Kaveh
Smith, James C.
Lazzari, Giovanna
Hyttel, Poul
Stunnenberg, Hendrik G.
Huynen, Martijn
Pedersen, Roger A.
Dinnyes, Andras
author_facet Bernardo, Andreia S.
Jouneau, Alice
Marks, Hendrik
Kensche, Philip
Kobolak, Julianna
Freude, Kristine
Hall, Vanessa
Feher, Anita
Polgar, Zsuzsanna
Sartori, Chiara
Bock, Istvan
Louet, Claire
Faial, Tiago
Kerstens, Hindrik H. D.
Bouissou, Camille
Parsonage, Gregory
Mashayekhi, Kaveh
Smith, James C.
Lazzari, Giovanna
Hyttel, Poul
Stunnenberg, Hendrik G.
Huynen, Martijn
Pedersen, Roger A.
Dinnyes, Andras
author_sort Bernardo, Andreia S.
collection PubMed
description During early mammalian development, transient pools of pluripotent cells emerge that can be immortalised upon stem cell derivation. The pluripotent state, ‘naïve’ or ‘primed’, depends on the embryonic stage and derivation conditions used. Here we analyse the temporal gene expression patterns of mouse, cattle and porcine embryos at stages that harbour different types of pluripotent cells. We document conserved and divergent traits in gene expression, and identify predictor genes shared across the species that are associated with pluripotent states in vivo and in vitro. Amongst these are the pluripotency-linked genes Klf4 and Lin28b. The novel genes discovered include naïve- (Spic, Scpep1 and Gjb5) and primed-associated (Sema6a and Jakmip2) genes as well as naïve to primed transition genes (Dusp6 and Trip6). Both Gjb5 and Dusp6 play a role in pluripotency since their knockdown results in differentiation and downregulation of key pluripotency genes. Our interspecies comparison revealed new insights of pluripotency, pluripotent stem cell identity and a new molecular criterion for distinguishing between pluripotent states in various species, including human.
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spelling pubmed-61245762018-09-07 Mammalian embryo comparison identifies novel pluripotency genes associated with the naïve or primed state Bernardo, Andreia S. Jouneau, Alice Marks, Hendrik Kensche, Philip Kobolak, Julianna Freude, Kristine Hall, Vanessa Feher, Anita Polgar, Zsuzsanna Sartori, Chiara Bock, Istvan Louet, Claire Faial, Tiago Kerstens, Hindrik H. D. Bouissou, Camille Parsonage, Gregory Mashayekhi, Kaveh Smith, James C. Lazzari, Giovanna Hyttel, Poul Stunnenberg, Hendrik G. Huynen, Martijn Pedersen, Roger A. Dinnyes, Andras Biol Open Research Article During early mammalian development, transient pools of pluripotent cells emerge that can be immortalised upon stem cell derivation. The pluripotent state, ‘naïve’ or ‘primed’, depends on the embryonic stage and derivation conditions used. Here we analyse the temporal gene expression patterns of mouse, cattle and porcine embryos at stages that harbour different types of pluripotent cells. We document conserved and divergent traits in gene expression, and identify predictor genes shared across the species that are associated with pluripotent states in vivo and in vitro. Amongst these are the pluripotency-linked genes Klf4 and Lin28b. The novel genes discovered include naïve- (Spic, Scpep1 and Gjb5) and primed-associated (Sema6a and Jakmip2) genes as well as naïve to primed transition genes (Dusp6 and Trip6). Both Gjb5 and Dusp6 play a role in pluripotency since their knockdown results in differentiation and downregulation of key pluripotency genes. Our interspecies comparison revealed new insights of pluripotency, pluripotent stem cell identity and a new molecular criterion for distinguishing between pluripotent states in various species, including human. The Company of Biologists Ltd 2018-07-19 /pmc/articles/PMC6124576/ /pubmed/30026265 http://dx.doi.org/10.1242/bio.033282 Text en © 2018. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0This 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 Research Article
Bernardo, Andreia S.
Jouneau, Alice
Marks, Hendrik
Kensche, Philip
Kobolak, Julianna
Freude, Kristine
Hall, Vanessa
Feher, Anita
Polgar, Zsuzsanna
Sartori, Chiara
Bock, Istvan
Louet, Claire
Faial, Tiago
Kerstens, Hindrik H. D.
Bouissou, Camille
Parsonage, Gregory
Mashayekhi, Kaveh
Smith, James C.
Lazzari, Giovanna
Hyttel, Poul
Stunnenberg, Hendrik G.
Huynen, Martijn
Pedersen, Roger A.
Dinnyes, Andras
Mammalian embryo comparison identifies novel pluripotency genes associated with the naïve or primed state
title Mammalian embryo comparison identifies novel pluripotency genes associated with the naïve or primed state
title_full Mammalian embryo comparison identifies novel pluripotency genes associated with the naïve or primed state
title_fullStr Mammalian embryo comparison identifies novel pluripotency genes associated with the naïve or primed state
title_full_unstemmed Mammalian embryo comparison identifies novel pluripotency genes associated with the naïve or primed state
title_short Mammalian embryo comparison identifies novel pluripotency genes associated with the naïve or primed state
title_sort mammalian embryo comparison identifies novel pluripotency genes associated with the naïve or primed state
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6124576/
https://www.ncbi.nlm.nih.gov/pubmed/30026265
http://dx.doi.org/10.1242/bio.033282
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