Heterokaryon-based reprogramming of human B lymphocytes for pluripotency requires Oct4 but not Sox2.
Differentiated cells can be reprogrammed through the formation of heterokaryons and hybrid cells when fused with embryonic stem (ES) cells. Here, we provide evidence that conversion of human B-lymphocytes towards a multipotent state is initiated much more rapidly than previously thought, occurring i...
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2008-09-01
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doaj-3d664c5a7ddc451eadf9eee78f820fe82020-11-25T00:08:40ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042008-09-0149e100017010.1371/journal.pgen.1000170Heterokaryon-based reprogramming of human B lymphocytes for pluripotency requires Oct4 but not Sox2.Carlos F PereiraRémi TerranovaNatalie K RyanJoana SantosKelly J MorrisWei CuiMatthias MerkenschlagerAmanda G FisherDifferentiated cells can be reprogrammed through the formation of heterokaryons and hybrid cells when fused with embryonic stem (ES) cells. Here, we provide evidence that conversion of human B-lymphocytes towards a multipotent state is initiated much more rapidly than previously thought, occurring in transient heterokaryons before nuclear fusion and cell division. Interestingly, reprogramming of human lymphocytes by mouse ES cells elicits the expression of a human ES-specific gene profile, in which markers of human ES cells are expressed (hSSEA4, hFGF receptors and ligands), but markers that are specific to mouse ES cells are not (e.g., Bmp4 and LIF receptor). Using genetically engineered mouse ES cells, we demonstrate that successful reprogramming of human lymphocytes is independent of Sox2, a factor thought to be required for induced pluripotent stem (iPS) cells. In contrast, there is a distinct requirement for Oct4 in the establishment but not the maintenance of the reprogrammed state. Experimental heterokaryons, therefore, offer a powerful approach to trace the contribution of individual factors to the reprogramming of human somatic cells towards a multipotent state.http://europepmc.org/articles/PMC2527997?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Carlos F Pereira Rémi Terranova Natalie K Ryan Joana Santos Kelly J Morris Wei Cui Matthias Merkenschlager Amanda G Fisher |
spellingShingle |
Carlos F Pereira Rémi Terranova Natalie K Ryan Joana Santos Kelly J Morris Wei Cui Matthias Merkenschlager Amanda G Fisher Heterokaryon-based reprogramming of human B lymphocytes for pluripotency requires Oct4 but not Sox2. PLoS Genetics |
author_facet |
Carlos F Pereira Rémi Terranova Natalie K Ryan Joana Santos Kelly J Morris Wei Cui Matthias Merkenschlager Amanda G Fisher |
author_sort |
Carlos F Pereira |
title |
Heterokaryon-based reprogramming of human B lymphocytes for pluripotency requires Oct4 but not Sox2. |
title_short |
Heterokaryon-based reprogramming of human B lymphocytes for pluripotency requires Oct4 but not Sox2. |
title_full |
Heterokaryon-based reprogramming of human B lymphocytes for pluripotency requires Oct4 but not Sox2. |
title_fullStr |
Heterokaryon-based reprogramming of human B lymphocytes for pluripotency requires Oct4 but not Sox2. |
title_full_unstemmed |
Heterokaryon-based reprogramming of human B lymphocytes for pluripotency requires Oct4 but not Sox2. |
title_sort |
heterokaryon-based reprogramming of human b lymphocytes for pluripotency requires oct4 but not sox2. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Genetics |
issn |
1553-7390 1553-7404 |
publishDate |
2008-09-01 |
description |
Differentiated cells can be reprogrammed through the formation of heterokaryons and hybrid cells when fused with embryonic stem (ES) cells. Here, we provide evidence that conversion of human B-lymphocytes towards a multipotent state is initiated much more rapidly than previously thought, occurring in transient heterokaryons before nuclear fusion and cell division. Interestingly, reprogramming of human lymphocytes by mouse ES cells elicits the expression of a human ES-specific gene profile, in which markers of human ES cells are expressed (hSSEA4, hFGF receptors and ligands), but markers that are specific to mouse ES cells are not (e.g., Bmp4 and LIF receptor). Using genetically engineered mouse ES cells, we demonstrate that successful reprogramming of human lymphocytes is independent of Sox2, a factor thought to be required for induced pluripotent stem (iPS) cells. In contrast, there is a distinct requirement for Oct4 in the establishment but not the maintenance of the reprogrammed state. Experimental heterokaryons, therefore, offer a powerful approach to trace the contribution of individual factors to the reprogramming of human somatic cells towards a multipotent state. |
url |
http://europepmc.org/articles/PMC2527997?pdf=render |
work_keys_str_mv |
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