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Promotion of Reprogramming to Ground State Pluripotency by Signal Inhibition

Induced pluripotent stem (iPS) cells are generated from somatic cells by genetic manipulation. Reprogramming entails multiple transgene integrations and occurs apparently stochastically in rare cells over many days. Tissue stem cells may be subject to less-stringent epigenetic restrictions than othe...

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Autores principales: Silva, Jose, Barrandon, Ornella, Nichols, Jennifer, Kawaguchi, Jitsutaro, Theunissen, Thorold W, Smith, Austin
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2570424/
https://www.ncbi.nlm.nih.gov/pubmed/18942890
http://dx.doi.org/10.1371/journal.pbio.0060253
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author Silva, Jose
Barrandon, Ornella
Nichols, Jennifer
Kawaguchi, Jitsutaro
Theunissen, Thorold W
Smith, Austin
author_facet Silva, Jose
Barrandon, Ornella
Nichols, Jennifer
Kawaguchi, Jitsutaro
Theunissen, Thorold W
Smith, Austin
author_sort Silva, Jose
collection PubMed
description Induced pluripotent stem (iPS) cells are generated from somatic cells by genetic manipulation. Reprogramming entails multiple transgene integrations and occurs apparently stochastically in rare cells over many days. Tissue stem cells may be subject to less-stringent epigenetic restrictions than other cells and might therefore be more amenable to deprogramming. We report that brain-derived neural stem (NS) cells acquire undifferentiated morphology rapidly and at high frequency after a single round of transduction with reprogramming factors. However, critical attributes of true pluripotency—including stable expression of endogenous Oct4 and Nanog, epigenetic erasure of X chromosome silencing in female cells, and ability to colonise chimaeras—were not attained. We therefore applied molecularly defined conditions for the derivation and propagation of authentic pluripotent stem cells from embryos. We combined dual inhibition (2i) of mitogen-activated protein kinase signalling and glycogen synthase kinase-3 (GSK3) with the self-renewal cytokine leukaemia inhibitory factor (LIF). The 2i/LIF condition induced stable up-regulation of Oct4 and Nanog, reactivation of the X chromosome, transgene silencing, and competence for somatic and germline chimaerism. Using 2i /LIF, NS cell reprogramming required only 1–2 integrations of each transgene. Furthermore, transduction with Sox2 and c-Myc is dispensable, and Oct4 and Klf4 are sufficient to convert NS cells into chimaera-forming iPS cells. These findings demonstrate that somatic cell state influences requirements for reprogramming and delineate two phases in the process. The ability to capture pre-pluripotent cells that can advance to ground state pluripotency simply and with high efficiency opens a door to molecular dissection of this remarkable phenomenon.
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spelling pubmed-25704242008-10-28 Promotion of Reprogramming to Ground State Pluripotency by Signal Inhibition Silva, Jose Barrandon, Ornella Nichols, Jennifer Kawaguchi, Jitsutaro Theunissen, Thorold W Smith, Austin PLoS Biol Research Article Induced pluripotent stem (iPS) cells are generated from somatic cells by genetic manipulation. Reprogramming entails multiple transgene integrations and occurs apparently stochastically in rare cells over many days. Tissue stem cells may be subject to less-stringent epigenetic restrictions than other cells and might therefore be more amenable to deprogramming. We report that brain-derived neural stem (NS) cells acquire undifferentiated morphology rapidly and at high frequency after a single round of transduction with reprogramming factors. However, critical attributes of true pluripotency—including stable expression of endogenous Oct4 and Nanog, epigenetic erasure of X chromosome silencing in female cells, and ability to colonise chimaeras—were not attained. We therefore applied molecularly defined conditions for the derivation and propagation of authentic pluripotent stem cells from embryos. We combined dual inhibition (2i) of mitogen-activated protein kinase signalling and glycogen synthase kinase-3 (GSK3) with the self-renewal cytokine leukaemia inhibitory factor (LIF). The 2i/LIF condition induced stable up-regulation of Oct4 and Nanog, reactivation of the X chromosome, transgene silencing, and competence for somatic and germline chimaerism. Using 2i /LIF, NS cell reprogramming required only 1–2 integrations of each transgene. Furthermore, transduction with Sox2 and c-Myc is dispensable, and Oct4 and Klf4 are sufficient to convert NS cells into chimaera-forming iPS cells. These findings demonstrate that somatic cell state influences requirements for reprogramming and delineate two phases in the process. The ability to capture pre-pluripotent cells that can advance to ground state pluripotency simply and with high efficiency opens a door to molecular dissection of this remarkable phenomenon. Public Library of Science 2008-10 2008-10-21 /pmc/articles/PMC2570424/ /pubmed/18942890 http://dx.doi.org/10.1371/journal.pbio.0060253 Text en © 2008 Silva 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
Silva, Jose
Barrandon, Ornella
Nichols, Jennifer
Kawaguchi, Jitsutaro
Theunissen, Thorold W
Smith, Austin
Promotion of Reprogramming to Ground State Pluripotency by Signal Inhibition
title Promotion of Reprogramming to Ground State Pluripotency by Signal Inhibition
title_full Promotion of Reprogramming to Ground State Pluripotency by Signal Inhibition
title_fullStr Promotion of Reprogramming to Ground State Pluripotency by Signal Inhibition
title_full_unstemmed Promotion of Reprogramming to Ground State Pluripotency by Signal Inhibition
title_short Promotion of Reprogramming to Ground State Pluripotency by Signal Inhibition
title_sort promotion of reprogramming to ground state pluripotency by signal inhibition
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2570424/
https://www.ncbi.nlm.nih.gov/pubmed/18942890
http://dx.doi.org/10.1371/journal.pbio.0060253
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