Activin and BMP4 Synergistically Promote Formation of Definitive Endoderm in Human Embryonic Stem Cells

生物 SOX2 节点信号 胚胎干细胞 下调和上调 激活素2型受体 内胚层 细胞生物学 胚芽层 原始条纹 细胞分化 干细胞 癌症研究 内分泌学 内科学 免疫学 转化生长因子β信号通路 转化生长因子 遗传学 诱导多能干细胞 中胚层 基因 原肠化 医学
作者
Adrian Kee Keong Teo,Yusuf Ali,Kee Yew Wong,Hiram Chipperfield,Akila Sadasivam,Yogavalli Poobalan,Ee Kim Tan,Siew Tein Wang,Suman Abraham,Norihiro Tsuneyoshi,Lawrence W. Stanton,N. Ray Dunn
出处
期刊:Stem Cells [Wiley]
卷期号:30 (4): 631-642 被引量:107
标识
DOI:10.1002/stem.1022
摘要

Abstract Human embryonic stem cells (hESCs) herald tremendous promise for the production of clinically useful cell types for the treatment of injury and disease. Numerous reports demonstrate their differentiation into definitive endoderm (DE) cells, the germ layer from which pancreatic β cells and hepatocytes arise, solely from exposure to a high dose of recombinant Activin/Nodal. We show that combining a second related ligand, BMP4, in combination with Activin A yields 15%–20% more DE as compared with Activin A alone. The addition of recombinant BMP4 accelerates the downregulation of pluripotency genes, particularly SOX2, and results in upregulation of endogenous BMP2 and BMP4, which in turn leads to elevated levels of phospho-SMAD1/5/8. Combined Activin A and BMP4 treatment also leads to an increase in the expression of DE genes CXCR4, SOX17, and FOXA2 when compared with Activin A addition alone. Comparative microarray studies between DE cells harvested on day 3 of differentiation further reveal a novel set of genes upregulated in response to initial BMP4 exposure. Several of these, including APLNR, LRIG3, MCC, LEPREL1, ROR2, and LZTS1, are expressed in the mouse primitive streak, the site of DE formation. Thus, this synergism between Activin A and BMP4 during the in vitro differentiation of hESC into DE suggests a complex interplay between BMP and Activin/Nodal signaling during the in vivo allocation and expansion of the endoderm lineage. Disclosure of potential conflicts of interest is found at the end of this article.

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