Zhang Jinqiu, Tam Wai-Leong, Tong Guo Qing, Wu Qiang, Chan Hsiao-Yun, Soh Boon-Seng, Lou Yuefei, Yang Jianchang, Ma Yupo, Chai Li, Ng Huck-Hui, Lufkin Thomas, Robson Paul, Lim Bing
Stem Cell and Developmental Biology, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672.
Nat Cell Biol. 2006 Oct;8(10):1114-23. doi: 10.1038/ncb1481. Epub 2006 Sep 17.
Embryonic stem (ES) cells are pluripotent cells that can self-renew or differentiate into many cell types. A unique network of transcription factors and signalling molecules are essential for maintaining this capability. Here, we report that a spalt family member, Sall4, is required for the pluripotency of ES cells. Similarly to Oct4, a reduction in Sall4 levels in mouse ES cells results in respecification, under the appropriate culture conditions, of ES cells to the trophoblast lineage. Sall4 regulates transcription of Pou5f1 which encodes Oct4. Sall4 binds to the highly conserved regulatory region of the Pou5f1 distal enhancer and activates Pou5f1 expression in vivo and in vitro. Microinjection of Sall4 small interfering (si) RNA into mouse zygotes resulted in reduction of Sall4 and Oct4 mRNAs in preimplantation embryos and significant expansion of Cdx2 expression into the inner cell mass. These results demonstrate that Sall4 is a transcriptional activator of Pou5f1 and has a critical role in the maintenance of ES cell pluripotency by modulating Oct4 expression. The data also indicates that Sall4 is important for early embryonic cell-fate decisions.
胚胎干细胞(ES细胞)是多能细胞,能够自我更新或分化为多种细胞类型。一个独特的转录因子和信号分子网络对于维持这种能力至关重要。在此,我们报告称,一个spalt家族成员Sall4是ES细胞多能性所必需的。与Oct4类似,小鼠ES细胞中Sall4水平的降低会导致在适当的培养条件下ES细胞重新分化为滋养层细胞系。Sall4调节编码Oct4的Pou5f1的转录。Sall4与Pou5f1远端增强子的高度保守调控区域结合,并在体内和体外激活Pou5f1的表达。将Sall4小干扰(si)RNA显微注射到小鼠受精卵中,导致植入前胚胎中Sall4和Oct4 mRNA减少,并且Cdx2表达显著扩展到内细胞团中。这些结果表明,Sall4是Pou5f1的转录激活因子,并且通过调节Oct4表达在维持ES细胞多能性方面具有关键作用。数据还表明,Sall4对于早期胚胎细胞命运决定很重要。