JOURNAL ARTICLE

Lefty1 and Lefty2 Control the Balance Between Self-Renewal and Pluripotent Differentiation of Mouse Embryonic Stem Cells

Dae‐Kwan KimYoung ChaHee-Jin AhnGwangil KimKyung‐Soon Park

Year: 2013 Journal:   Stem Cells and Development Vol: 23 (5)Pages: 457-466   Publisher: Mary Ann Liebert, Inc.

Abstract

Lefty expression has been recognized as a stemness marker because Lefty is enriched both in undifferentiated embryonic stem cells (ESCs) and in blastocysts. Here, we examined the function of Lefty1 and Lefty2 in the maintenance of self-renewal and pluripotency of mouse ESCs (mESCs). Suppression of Lefty1 or Lefty2 expression in mESCs did not alter the self-renewal properties of mESCs under nondifferentiating conditions, but suppression of these genes did affect Smad2 phosphorylation and differentiation. Lefty1 knockdown mESCs showed enhanced phosphorylation of Smad2 and increased differentiation potential, whereas Lefty2 knockdown mESCs exhibited reduced phosphorylation of Smad2 and enhanced self-renewal in the presence of a differentiation signal. In vivo, teratomas developed from Lefty2 knockdown mESCs contained massive expansions of immature neuroepithelium, a marker of malignant teratomas. Taken together, these results suggest that optimal expression of Lefty1 and Lefty2 is critical for the balanced differentiation of mESCs into three germ layers.

Keywords:
Biology Gene knockdown Embryonic stem cell Germ layer Cell biology Induced pluripotent stem cell Phosphorylation Cellular differentiation Neuroepithelial cell Embryoid body Stem cell Ectoderm Molecular biology Embryogenesis Embryo Genetics Gene Neural stem cell

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0.80
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Citation History

Topics

Pluripotent Stem Cells Research
Life Sciences →  Biochemistry, Genetics and Molecular Biology →  Molecular Biology
Renal and related cancers
Life Sciences →  Biochemistry, Genetics and Molecular Biology →  Molecular Biology
Developmental Biology and Gene Regulation
Life Sciences →  Biochemistry, Genetics and Molecular Biology →  Molecular Biology

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