Nishimoto Masazumi, Miyagi Satoru, Yamagishi Toshiyuki, Sakaguchi Takehisa, Niwa Hitoshi, Muramatsu Masami, Okuda Akihiko
Division of Developmental Biology, Research Center for Genomic Medicine, Saitama Medical School, 1397-1 Yamane, Hidaka, Saitama 350-1241, Japan.
Mol Cell Biol. 2005 Jun;25(12):5084-94. doi: 10.1128/MCB.25.12.5084-5094.2005.
The POU transcription factor Oct-3/4 has been shown to be critical for maintaining embryonic stem (ES) cell character. However, the molecular mechanisms underlying its function remain elusive. We have previously shown that among the POU transcription factor family of proteins, Oct-3/4 alone is able to bind to the regulatory region of the UTF1 gene bearing a variant octamer sequence together with Sox-2. Here, we demonstrate using Oct-3/4-Oct-6 chimeras that there is a precise correlation between the ability of proteins to form a complex on the UTF1 enhancer with Sox-2 and the ability to maintain the stem cell state in ES cells. Different chimeric proteins show differential abilities to form a Sox-2-containing complex on the UTF1 regulatory region, with a decrease in efficiency of the complex formation accompanied by a decrease in the level of UTF1 expression and the rate of cell proliferation. Overexpression of UTF1 in these slow-growing cells was able to restore their proliferation rate to wild-type levels. Moreover, UTF1 was also observed to have an effect on teratoma formation. These results suggest a molecular pathway by which Oct-3/4 induces rapid proliferation and tumorigenic properties of ES cells through activation of the UTF1 gene.
POU转录因子Oct-3/4已被证明对维持胚胎干细胞(ES细胞)特性至关重要。然而,其功能背后的分子机制仍不清楚。我们之前已经表明,在POU转录因子家族蛋白中,只有Oct-3/4能够与带有变异八聚体序列的UTF1基因调控区域结合,同时结合Sox-2。在这里,我们使用Oct-3/4-Oct-6嵌合体证明,蛋白质在UTF1增强子上与Sox-2形成复合物的能力与在ES细胞中维持干细胞状态的能力之间存在精确的相关性。不同的嵌合蛋白在UTF1调控区域形成含Sox-2复合物的能力不同,复合物形成效率的降低伴随着UTF1表达水平和细胞增殖速率的降低。在这些生长缓慢的细胞中过表达UTF1能够将其增殖速率恢复到野生型水平。此外,还观察到UTF1对畸胎瘤形成有影响。这些结果表明了一条分子途径,通过该途径Oct-3/4通过激活UTF1基因诱导ES细胞快速增殖和致瘤特性。