Sirt1, p53, and p38MAPK are Crucial Regulators of Detrimental Phenotypes of Embryonic Stem Cells with Max Expression Ablation

被引:20
作者
Hishida, Tomoaki [1 ,5 ]
Nozaki, Yuriko [1 ,5 ]
Nakachi, Yutaka [2 ,3 ]
Mizuno, Yosuke [3 ]
Iseki, Hiroyoshi [3 ,5 ]
Katano, Miyuki [1 ]
Kamon, Masayoshi [1 ,5 ]
Hirasaki, Masataka [1 ]
Nishimoto, Masazumi [4 ]
Okazaki, Yasushi [2 ,3 ,5 ]
Okuda, Akihiko [1 ,5 ]
机构
[1] Saitama Med Univ, Div Dev Biol, Res Ctr Genom Med, Hidaka, Saitama 3501241, Japan
[2] Saitama Med Univ, Div Translat Res, Res Ctr Genom Med, Hidaka, Saitama 3501241, Japan
[3] Saitama Med Univ, Div Funct Genom & Syst Med, Res Ctr Genom Med, Hidaka, Saitama 3501241, Japan
[4] Saitama Med Univ, Radioisotope Expt Lab, Res Ctr Genom Med, Hidaka, Saitama 3501241, Japan
[5] Japan Sci & Technol Agcy, CREST, Kawaguchi, Saitama, Japan
基金
日本学术振兴会;
关键词
Embryonic stem cells; Pluripotency; c-Myc; p53; Apoptosis; SELF-RENEWAL; TRANSCRIPTIONAL NETWORK; GENE-EXPRESSION; PROTEIN; MYC; PLURIPOTENCY; DIFFERENTIATION; ACTIVATION; INITIATION; INHIBITION;
D O I
10.1002/stem.1147
中图分类号
Q813 [细胞工程];
学科分类号
摘要
c-Myc participates in diverse cellular processes including cell cycle control, tumorigenic transformation, and reprogramming of somatic cells to induced pluripotent cells. c-Myc is also an important regulator of self-renewal and pluripotency of embryonic stem cells (ESCs). We recently demonstrated that loss of the Max gene, encoding the best characterized partner for all Myc family proteins, causes loss of the pluripotent state and extensive cell death in ESCs strictly in this order. However, the mechanisms and molecules that are responsible for these phenotypes remain largely obscure. Here, we show that Sirt1, p53, and p38(MAPK) are crucially involved in the detrimental phenotype of Max-null ESCs. Moreover, our analyses revealed that these proteins are involved at varying levels to one another in the hierarchy of the pathway leading to cell death in Max-null ESCs. STEM CELLS 2012; 30: 1634-1644
引用
收藏
页码:1634 / 1644
页数:11
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