Functional evaluation of ES-somatic cell hybrids in vitro and in vivo Journal Article


Authors: Sumer, H.; Kim, K.; Liu, J.; Ng, K.; Daley, G. Q.; Verma, P. J.
Article Title: Functional evaluation of ES-somatic cell hybrids in vitro and in vivo
Abstract: Embryonic stem cells (ESCs) have previously been reported to reprogram somatic cells following fusion. The resulting ES-somatic cell hybrids have been shown to adopt the transcriptional profile of ESCs, suggesting that the pluripotent program is dominant. ES-somatic cell hybrids have most characteristics of pluripotent cells in vitro; however, it remains unclear whether the somatic genome is an active partner in the hybrid cells or simply retained predominately as silent cargo. Furthermore, the functional properties of ES-somatic cell hybrids in vivo have been limited to studies on their contribution to teratomas and developing embryos/chimeras. The extent of their pluripotency remains largely unclear. Here we determined that the somatic genome is actively transcribed by generating ES-somatic cell hybrids using Rag2-deficient ESCs fused to autologous wild-type somatic cells. Rag2 expression was detected during in vitro differentiation, suggesting that the somatic genome follows the correct temporal cues during differentiation. Furthermore, ES-somatic cell hybrids maintain their tetraploid state following 4 weeks of differentiation in vivo and are immune tolerated when transferred into matched individuals. The ES-somatic cell hybrids can efficiently differentiate into hematopoietic precursors in both myeloid and lymphoid lineages in vitro, suggesting that the somatic genome is actively transcribed following cell fusion based reprogramming. However, the ES-somatic cell hybrids showed an altered hematopoietic potential following in vitro differentiation and were unable to show hematopoietic engraftment in a mouse model. Copyright © 2014, Mary Ann Liebert, Inc.
Keywords: controlled study; protein expression; nonhuman; animal cell; mouse; somatic cell; embryonic stem cell; animal experiment; in vivo study; cell differentiation; in vitro study; genome; rag2 protein; cell fusion; hybrid cell; priority journal; article; embryonic stem somatic cell hybrid
Journal Title: Cellular Reprogramming
Volume: 16
Issue: 3
ISSN: 2152-4971
Publisher: Mary Ann Liebert, Inc  
Date Published: 2014-06-01
Start Page: 167
End Page: 174
Language: English
DOI: 10.1089/cell.2013.0079
PROVIDER: scopus
PMCID: PMC4030652
PUBMED: 24787484
DOI/URL:
Notes: Cell. Reprogramming -- Export Date: 8 July 2014 -- Source: Scopus
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors
  1. Kitai Kim
    13 Kim