Sato Shiori, Nakazawa Masato, Kihara Yumi, Kubo Yusuke, Sato Yuki, Kikuchi Takahiro, Nonaka Asumi, Sasaki Akira, Iwashita Jun, Murata Jun, Hosaka Masahiro, Kobayashi Masayuki
Graduate School of Bioresource Sciences, Akita Prefectural University, 241-438 Kaidohbatanishi, Shimoshinjohnakano, Akita 010-0195, Japan.
Graduate School of Bioresource Sciences, Akita Prefectural University, 241-438 Kaidohbatanishi, Shimoshinjohnakano, Akita 010-0195, Japan; Akita Research Institute of Food and Brewing, 4-26 Sanuki, Araya-machi, Akita 010-1623, Japan.
J Biosci Bioeng. 2015 Nov;120(5):562-9. doi: 10.1016/j.jbiosc.2015.03.001. Epub 2015 Mar 26.
We previously reported that transcripts encoding the homeoprotein EGAM1N are expressed in preimplantation mouse embryos and embryonic stem (ES) cells, and the exogenous expression of EGAM1N inhibits the differentiation of ES cells. In order to clarify the relationship between the inhibition of differentiation and EGAM1N, we generated mouse MG1.19 ES cells stably expressing EGAM1N. Control transfectants with an empty vector formed relatively flattened cell colonies similar to those observed in parental MG1.19 cells. In contrast, Egam1n transfectants formed tightly aggregated cell colonies with increased localization of CDH1 at cell-to-cell interfaces. The protein levels of pluripotency factors, including TBX3 and SOX2, were also increased. The expression of Tbx3 transcripts was induced, although the level of Sox2 transcripts was almost unchanged. The expression of EGAM1N resulted in no obvious changes in the expression of genes encoding receptors, protein kinases, transcription factors, and their encoded proteins involved in the LIF-STAT3 signaling pathway. Alkaline phosphatase activity, a marker for the undifferentiated state, in Egam1n transfectants was exhibited in a clonal proliferation assay. When differentiation of Egam1n transfectants was induced, progression was prevented with increases in transcript levels of Pou5f1, Sox2, Nanog, Klf4, Tbx3, and their encoded proteins. However, Egam1n transfectants formed relatively flattened-cell layers as observed in the control, indicating that the expression of EGAM1N could not maintain LIF-independent self-renewal of ES cells. Overall, we suggest that expression of EGAM1N could inhibit differentiation, at least in part, by elevating the protein levels of pluripotency factors in MG1.19 ES cells.
我们之前报道过,编码同源结构域蛋白EGAM1N的转录本在植入前的小鼠胚胎和胚胎干细胞(ES细胞)中表达,并且EGAM1N的外源表达会抑制ES细胞的分化。为了阐明分化抑制与EGAM1N之间的关系,我们构建了稳定表达EGAM1N的小鼠MG1.19 ES细胞。用空载体转染的对照细胞形成了相对扁平的细胞集落,类似于在亲代MG1.19细胞中观察到的情况。相比之下,Egam1n转染细胞形成了紧密聚集的细胞集落,并且E-钙黏蛋白(CDH1)在细胞间界面的定位增加。多能性因子(包括TBX3和SOX2)的蛋白水平也有所升高。虽然Sox2转录本的水平几乎没有变化,但Tbx3转录本的表达被诱导。EGAM1N的表达导致参与LIF-STAT3信号通路的受体、蛋白激酶、转录因子及其编码蛋白的基因表达没有明显变化。在克隆增殖试验中,Egam1n转染细胞表现出碱性磷酸酶活性,这是未分化状态的一个标志。当诱导Egam1n转染细胞分化时,Pou5f1、Sox2、Nanog、Klf4、Tbx3及其编码蛋白的转录本水平升高,从而阻止了分化进程。然而,Egam1n转染细胞形成了如对照中观察到的相对扁平的细胞层,这表明EGAM1N的表达不能维持ES细胞不依赖LIF的自我更新。总体而言,我们认为EGAM1N的表达至少部分地通过提高MG1.19 ES细胞中多能性因子的蛋白水平来抑制分化。