Dvash Tamar, Sharon Nadav, Yanuka Ofra, Benvenisty Nissim
Department of Genetics, Institute of Life Sciences, Hebrew University, Jerusalem, Israel.
Stem Cells. 2007 Feb;25(2):465-72. doi: 10.1634/stemcells.2006-0179. Epub 2006 Oct 12.
Human ESCs (HESCs) are self-renewing pluripotent cell lines that are derived from the inner cell mass of blastocyst-stage embryos. These cells can produce terminally differentiated cells representing the three embryonic germ layers. We thus hypothesized that during the course of in vitro differentiation of HESCs, progenitor-like cells are transiently formed. We demonstrated that LEFTY proteins, which are known to play a major role during mouse gastrulation, are transiently expressed during HESC differentiation. Moreover, LEFTY proteins seemed to be exclusively expressed by a certain population of cells in the early human embryoid bodies that does not overlap with the population expressing the ESC marker OCT4. We also showed that LEFTY expression is regulated at the cellular transcription level by molecular labeling of LEFTY-positive cells. A DNA microarray analysis of LEFTY-overexpressing cells revealed a signature of cell surface markers such as CADHERIN 2 and 11. Expression of LEFTY controlled by NODAL appears to have a substantial role in mesodermal origin cell population establishment, since inhibition of NODAL activity downregulated expression not only of LEFTY A and LEFTY B but also of BRACHYURY, an early mesodermal marker. In addition, other mesodermal lineage-related genes were downregulated, and this was accompanied by an upregulation in ectoderm-related genes. We propose that during the initial step of HESC differentiation, mesoderm progenitor-like cells appear via activation of the NODAL pathway. Our analysis suggests that in vitro differentiation of HESCs can model early events in human development.
人类胚胎干细胞(hESCs)是源自囊胚期胚胎内细胞团的自我更新多能细胞系。这些细胞能够产生代表三个胚胎胚层的终末分化细胞。因此,我们推测在hESCs体外分化过程中,会短暂形成祖细胞样细胞。我们证明,已知在小鼠原肠胚形成过程中起主要作用的LEFTY蛋白,在hESCs分化过程中短暂表达。此外,LEFTY蛋白似乎仅由早期人类胚状体中的特定细胞群体表达,该群体与表达ESC标志物OCT4的细胞群体不重叠。我们还表明,LEFTY的表达在细胞转录水平上通过LEFTY阳性细胞的分子标记进行调控。对过表达LEFTY的细胞进行DNA微阵列分析,揭示了细胞表面标志物如钙黏蛋白2和11的特征。由NODAL控制的LEFTY表达似乎在中胚层起源细胞群体的建立中起重要作用,因为抑制NODAL活性不仅下调了LEFTY A和LEFTY B的表达,还下调了早期中胚层标志物BRACHYURY的表达。此外,其他中胚层谱系相关基因也被下调,同时外胚层相关基因上调。我们提出,在hESCs分化的初始阶段,中胚层祖细胞样细胞通过NODAL途径的激活而出现。我们的分析表明,hESCs的体外分化可以模拟人类发育的早期事件。