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Reprogramming Primordial Germ Cells into Pluripotent Stem Cells

BACKGROUND: Specification of primordial germ cells (PGCs) results in the conversion of pluripotent epiblast cells into monopotent germ cell lineage. Blimp1/Prmt5 complex plays a critical role in the specification and maintenance of the early germ cell lineage. However, PGCs can be induced to dediffe...

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Autores principales: Durcova-Hills, Gabriela, Tang, Fuchou, Doody, Gina, Tooze, Reuben, Surani, M. Azim
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2567847/
https://www.ncbi.nlm.nih.gov/pubmed/18953407
http://dx.doi.org/10.1371/journal.pone.0003531
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author Durcova-Hills, Gabriela
Tang, Fuchou
Doody, Gina
Tooze, Reuben
Surani, M. Azim
author_facet Durcova-Hills, Gabriela
Tang, Fuchou
Doody, Gina
Tooze, Reuben
Surani, M. Azim
author_sort Durcova-Hills, Gabriela
collection PubMed
description BACKGROUND: Specification of primordial germ cells (PGCs) results in the conversion of pluripotent epiblast cells into monopotent germ cell lineage. Blimp1/Prmt5 complex plays a critical role in the specification and maintenance of the early germ cell lineage. However, PGCs can be induced to dedifferentiate back to a pluripotent state as embryonic germ (EG) cells when exposed to exogenous signaling molecules, FGF-2, LIF and SCF. METHODOLOGY AND PRINCIPAL FINDINGS: Here we show that Trichostatin A (TSA), an inhibitor of histone deacetylases, is a highly potent agent that can replace FGF-2 to induce dedifferentiation of PGCs into EG cells. A key early event during dedifferentiation of PGCs in response to FGF-2 or TSA is the down-regulation of Blimp1, which reverses and apparently relieves the cell fate restriction imposed by it. Notably, the targets of Blimp1, which include c-Myc and Klf-4, which represent two of the key factors known to promote reprogramming of somatic cells to pluripotent state, are up-regulated. We also found early activation of the LIF/Stat-3 signaling pathway with the translocation of Stat-3 into the nucleus. By contrast, while Prmt5 is retained in EG cells, it translocates from the nucleus to the cytoplasm where it probably has an independent role in regulating pluripotency. CONCLUSIONS/SIGNIFICANCE: We propose that dedifferentiation of PGCs into EG cells may provide significant mechanistic insights on early events associated with reprogramming of committed cells to a pluripotent state.
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spelling pubmed-25678472008-10-27 Reprogramming Primordial Germ Cells into Pluripotent Stem Cells Durcova-Hills, Gabriela Tang, Fuchou Doody, Gina Tooze, Reuben Surani, M. Azim PLoS One Research Article BACKGROUND: Specification of primordial germ cells (PGCs) results in the conversion of pluripotent epiblast cells into monopotent germ cell lineage. Blimp1/Prmt5 complex plays a critical role in the specification and maintenance of the early germ cell lineage. However, PGCs can be induced to dedifferentiate back to a pluripotent state as embryonic germ (EG) cells when exposed to exogenous signaling molecules, FGF-2, LIF and SCF. METHODOLOGY AND PRINCIPAL FINDINGS: Here we show that Trichostatin A (TSA), an inhibitor of histone deacetylases, is a highly potent agent that can replace FGF-2 to induce dedifferentiation of PGCs into EG cells. A key early event during dedifferentiation of PGCs in response to FGF-2 or TSA is the down-regulation of Blimp1, which reverses and apparently relieves the cell fate restriction imposed by it. Notably, the targets of Blimp1, which include c-Myc and Klf-4, which represent two of the key factors known to promote reprogramming of somatic cells to pluripotent state, are up-regulated. We also found early activation of the LIF/Stat-3 signaling pathway with the translocation of Stat-3 into the nucleus. By contrast, while Prmt5 is retained in EG cells, it translocates from the nucleus to the cytoplasm where it probably has an independent role in regulating pluripotency. CONCLUSIONS/SIGNIFICANCE: We propose that dedifferentiation of PGCs into EG cells may provide significant mechanistic insights on early events associated with reprogramming of committed cells to a pluripotent state. Public Library of Science 2008-10-27 /pmc/articles/PMC2567847/ /pubmed/18953407 http://dx.doi.org/10.1371/journal.pone.0003531 Text en Durcova-Hills et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Durcova-Hills, Gabriela
Tang, Fuchou
Doody, Gina
Tooze, Reuben
Surani, M. Azim
Reprogramming Primordial Germ Cells into Pluripotent Stem Cells
title Reprogramming Primordial Germ Cells into Pluripotent Stem Cells
title_full Reprogramming Primordial Germ Cells into Pluripotent Stem Cells
title_fullStr Reprogramming Primordial Germ Cells into Pluripotent Stem Cells
title_full_unstemmed Reprogramming Primordial Germ Cells into Pluripotent Stem Cells
title_short Reprogramming Primordial Germ Cells into Pluripotent Stem Cells
title_sort reprogramming primordial germ cells into pluripotent stem cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2567847/
https://www.ncbi.nlm.nih.gov/pubmed/18953407
http://dx.doi.org/10.1371/journal.pone.0003531
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