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A murine ESC-like state facilitates transgenesis and homologous recombination in human pluripotent stem cells.


ABSTRACT: Murine pluripotent stem cells can exist in two functionally distinct states, LIF-dependent embryonic stem cells (ESCs) and bFGF-dependent epiblast stem cells (EpiSCs). However, human pluripotent cells so far seemed to assume only an epiblast-like state. Here we demonstrate that human iPSC reprogramming in the presence of LIF yields human stem cells that display morphological, molecular, and functional properties of murine ESCs. We termed these hLR5 iPSCs because they require the expression of five ectopic reprogramming factors, Oct4, Sox2, Klf4, cMyc, and Nanog, to maintain this more naive state. The cells are "metastable" and upon ectopic factor withdrawal they revert to standard human iPSCs. Finally, we demonstrate that the hLR5 state facilitates gene targeting, and as such provides a powerful tool for the generation of recombinant human pluripotent stem cell lines.

SUBMITTER: Buecker C 

PROVIDER: S-EPMC3162213 | biostudies-literature | 2010 Jun

REPOSITORIES: biostudies-literature

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A murine ESC-like state facilitates transgenesis and homologous recombination in human pluripotent stem cells.

Buecker Christa C   Chen Hsu-Hsin HH   Polo Jose Maria JM   Daheron Laurence L   Bu Lei L   Barakat Tahsin Stefan TS   Okwieka Patricia P   Porter Andrew A   Gribnau Joost J   Hochedlinger Konrad K   Geijsen Niels N  

Cell stem cell 20100601 6


Murine pluripotent stem cells can exist in two functionally distinct states, LIF-dependent embryonic stem cells (ESCs) and bFGF-dependent epiblast stem cells (EpiSCs). However, human pluripotent cells so far seemed to assume only an epiblast-like state. Here we demonstrate that human iPSC reprogramming in the presence of LIF yields human stem cells that display morphological, molecular, and functional properties of murine ESCs. We termed these hLR5 iPSCs because they require the expression of fi  ...[more]

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