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由Erk1/2介导的GATA6磷酸化推动细胞从多能性状态退出并定向分化为原始内胚层。

GATA6 phosphorylation by Erk1/2 propels exit from pluripotency and commitment to primitive endoderm.

作者信息

Meng Yue, Moore Robert, Tao Wensi, Smith Elizabeth R, Tse Jeffrey D, Caslini Corrado, Xu Xiang-Xi

机构信息

Department of Cell Biology, University of Miami Miller School of Medicine, Miami, FL 33136, USA; Graduate Program in Molecular Cell and Developmental Biology, University of Miami Miller School of Medicine, Miami, FL 33136, USA.

Department of Cell Biology, University of Miami Miller School of Medicine, Miami, FL 33136, USA.

出版信息

Dev Biol. 2018 Apr 1;436(1):55-65. doi: 10.1016/j.ydbio.2018.02.007. Epub 2018 Feb 15.

Abstract

The transcription factor GATA6 and the Fgf/Ras/MAPK signaling pathway are essential for the development of the primitive endoderm (PrE), one of the two lineages derived from the pluripotent inner cell mass (ICM) of mammalian blastocysts. A mutant mouse line in which Gata6-coding exons are replaced with H2BGFP (histone H2B Green Fluorescence Protein fusion protein) was developed to monitor Gata6 promoter activity. In the Gata6-H2BGFP heterozygous blastocysts, the ICM cells that initially had uniform GFP fluorescence signal at E3.5 diverged into two populations by the 64-cell stage, either as the GFP-high PrE or the GFP-low epiblasts (Epi). However in the GATA6-null blastocysts, the originally moderate GFP expression subsided in all ICM cells, indicating that the GATA6 protein is required to maintain its own promoter activity during PrE linage commitment. In embryonic stem cells, expressed GATA6 was shown to bind and activate the Gata6 promoter in PrE differentiation. Mutations of a conserved serine residue (S264) for Erk1/2 phosphorylation in GATA6 protein drastically impacted its ability to activate its own promoter. We conclude that phosphorylation of GATA6 by Erk1/2 compels exit from pluripotent state, and the phosphorylation propels a GATA6 positive feedback regulatory circuit to compel PrE differentiation. Our findings resolve the longstanding question on the dual requirements of GATA6 and Ras/MAPK pathway for PrE commitment of the pluripotent ICM.

摘要

转录因子GATA6和Fgf/Ras/MAPK信号通路对于原始内胚层(PrE)的发育至关重要,原始内胚层是源自哺乳动物囊胚多能内细胞团(ICM)的两个谱系之一。构建了一个突变小鼠品系,其中Gata6编码外显子被H2BGFP(组蛋白H2B绿色荧光蛋白融合蛋白)取代,以监测Gata6启动子活性。在Gata6-H2BGFP杂合囊胚中,在E3.5时最初具有均匀GFP荧光信号的ICM细胞在64细胞阶段分化为两个群体,即GFP高的PrE或GFP低的上胚层(Epi)。然而,在GATA6基因敲除的囊胚中,所有ICM细胞中原本中等水平的GFP表达都减弱了,这表明GATA6蛋白在PrE谱系定向分化过程中是维持其自身启动子活性所必需的。在胚胎干细胞中,表达的GATA6在PrE分化过程中被证明可结合并激活Gata6启动子。GATA6蛋白中用于Erk1/2磷酸化的保守丝氨酸残基(S264)的突变极大地影响了其激活自身启动子的能力。我们得出结论,Erk1/2对GATA6的磷酸化促使细胞退出多能状态,并且这种磷酸化推动了一个GATA6正反馈调节回路以促使PrE分化。我们的研究结果解决了关于GATA6和Ras/MAPK通路对多能ICM的PrE定向分化的双重需求这一长期存在的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/048b/5912698/a65ff3b4e2b4/nihms959230f1.jpg

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