Brink Thore C, Sudheer Smita, Janke Doreen, Jagodzinska Justyna, Jung Marc, Adjaye James
Department of Vertebrate Genomics (Molecular Embryology and Aging), Max Planck Institute for Molecular Genetics, Berlin, Germany.
Cells Tissues Organs. 2008;188(1-2):9-22. doi: 10.1159/000112843. Epub 2007 Dec 20.
Human inner cell mass (ICM) cells isolated from in vitro fertilized blastocysts are the progenitor cells used to establish in vitro stable human embryonic stem cells (hESCs) which are pluripotent and self-renew indefinitely. This long-term perpetuation of hESCs in the undifferentiated state is thought to be an in vitro adaptation of the ICM cells. To investigate at the molecular level how hESCs acquired their unique properties, transcriptional profiles of isolated ICM cells and undifferentiated hESCs were compared. We identified 33 genes enriched in the ICM compared to the trophectoderm and hESCs. These genes are involved in signaling cascades (SEMA7A and MAP3K10), cell proliferation (CUZD1 and MS4A7) and chromatin remodeling (H1FOO and HRMT1L4). Furthermore, primordial germ cell-specific genes (SGCA and TEX11) were detected as expressed in the ICM cells and not hESCs. We propose that the transcriptional differences observed between ICM cells and hESCs might be accounted for by adaptive reprogramming events induced by the in vitro culture conditions which are distinct from that of in vitro fertilized blastocysts. hESCs are a distinct cell type lacking in the human embryo but, nonetheless, resemble the ICM in their ability to differentiate into cells representative of the endodermal, ectodermal and mesodermal cell lineages.
从体外受精囊胚中分离出的人类内细胞团(ICM)细胞是用于建立体外稳定的人类胚胎干细胞(hESC)的祖细胞,这些细胞具有多能性且能无限自我更新。hESC在未分化状态下的这种长期维持被认为是ICM细胞的一种体外适应性变化。为了在分子水平上研究hESC如何获得其独特特性,我们比较了分离出的ICM细胞和未分化hESC的转录谱。我们鉴定出33个与滋养外胚层和hESC相比在ICM中富集的基因。这些基因参与信号级联反应(SEMA7A和MAP3K10)、细胞增殖(CUZD1和MS4A7)以及染色质重塑(H1FOO和HRMT1L4)。此外,原始生殖细胞特异性基因(SGCA和TEX11)在ICM细胞中表达而在hESC中未检测到。我们提出,ICM细胞和hESC之间观察到的转录差异可能是由体外培养条件诱导的适应性重编程事件所导致的,这些条件与体外受精囊胚的条件不同。hESC是人类胚胎中不存在的一种独特细胞类型,但尽管如此,它们在分化为代表内胚层、外胚层和中胚层细胞谱系的细胞的能力方面与ICM相似。