Induction of Pluripotency in Mouse Somatic Cells with Lineage Specifiers
Author(s) -
Jian Shu,
Chen Wu,
Yetao Wu,
Zhiyuan Li,
Sida Shao,
Wenhui Zhao,
Xing Tang,
Huan Yang,
Lijun Shen,
Xiaohan Zuo,
Weifeng Yang,
Yan Shi,
Xiaochun Chi,
Hongquan Zhang,
Ge Gao,
Youmin Shu,
Kehu Yuan,
Wei-Wu He,
Chao Tang,
Yang Zhao,
Hongkui Deng
Publication year - 2013
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2013.05.001
Subject(s) - biology , somatic cell , lineage (genetic) , microbiology and biotechnology , cell lineage , genetics , cellular differentiation , gene
The reprogramming factors that induce pluripotency have been identified primarily from embryonic stem cell (ESC)-enriched, pluripotency-associated factors. Here, we report that, during mouse somatic cell reprogramming, pluripotency can be induced with lineage specifiers that are pluripotency rivals to suppress ESC identity, most of which are not enriched in ESCs. We found that OCT4 and SOX2, the core regulators of pluripotency, can be replaced by lineage specifiers that are involved in mesendodermal (ME) specification and in ectodermal (ECT) specification, respectively. OCT4 and its substitutes attenuated the elevated expression of a group of ECT genes, whereas SOX2 and its substitutes curtailed a group of ME genes during reprogramming. Surprisingly, the two counteracting lineage specifiers can synergistically induce pluripotency in the absence of both OCT4 and SOX2. Our study suggests a "seesaw model" in which a balance that is established using pluripotency factors and/or counteracting lineage specifiers can facilitate reprogramming.
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