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Transformation of somatic cells into stem cell-like cells under a stromal niche.


ABSTRACT: To study the genomic plasticity of somatic cells without ectopic genetic manipulation, we cultured mouse fibroblasts with ovarian cells, embryonic fibroblasts of different strains, and parthenogenetic embryonic stem cells (ESCs). Of 41 trials, cell aggregation resembling nascent ESC colony from inner cell mass was detected in 9 cases (22%), and 6 cases (67%) yielded fibroblast-derived colonies with ESC morphology. Cells used in coculture provided the critical (P=0.0061) inducing factor for the aggregation. These colony-forming fibroblasts (CFFs) showed similar characteristics to those in ESCs and induced pluripotent stem cells (iPSCs), including pluripotency gene expression, in vitro differentiation, and teratoma formation. Furthermore, CFFs produced somatic chimera, although none showed germline chimerism. CFFs had a tetraploid-like karyotype, and their imprinting patterns differed from parthenogenetic ESCs, thereby confirming their nongermline transmissibility. We observed dysregulation of cell cycle-related proteins, as well as both homologous and heterologous recombination of genomic single-nucleotide polymorphisms in CFFs. Our observations provide information on somatic cell plasticity, resulting in stemness or tumorigenesis, regardless of colony-forming cell progenitors in the fibroblast population. The plasticity of somatic genomes under environmental influences, as well as acquisition of pluripotency by cell fusion, is also implicated.

SUBMITTER: Lee ST 

PROVIDER: S-EPMC4050423 | biostudies-literature | 2013 Jul

REPOSITORIES: biostudies-literature

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Transformation of somatic cells into stem cell-like cells under a stromal niche.

Lee Seung Tae ST   Gong Seung Pyo SP   Yum Kyung Eun KE   Lee Eun Ju EJ   Lee Chae Hyun CH   Choi Jun Hee JH   Kim Dae Yong DY   Han Hojae H   Kim Kye-Seong KS   Hysolli Eriona E   Ahn Ji Yeon JY   Park In-Hyun IH   Han Jae Yong JY   Jeong Jae-Wook JW   Lim Jeong Mook JM  

FASEB journal : official publication of the Federation of American Societies for Experimental Biology 20130411 7


To study the genomic plasticity of somatic cells without ectopic genetic manipulation, we cultured mouse fibroblasts with ovarian cells, embryonic fibroblasts of different strains, and parthenogenetic embryonic stem cells (ESCs). Of 41 trials, cell aggregation resembling nascent ESC colony from inner cell mass was detected in 9 cases (22%), and 6 cases (67%) yielded fibroblast-derived colonies with ESC morphology. Cells used in coculture provided the critical (P=0.0061) inducing factor for the a  ...[more]

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