首页> 外文OA文献 >Extinction of Oct-3/4 gene expression in embryonal carcinoma x fibroblast somatic cell hybrids is accompanied by changes in the methylation status, chromatin structure, and transcriptional activity of the Oct-3/4 upstream region.
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Extinction of Oct-3/4 gene expression in embryonal carcinoma x fibroblast somatic cell hybrids is accompanied by changes in the methylation status, chromatin structure, and transcriptional activity of the Oct-3/4 upstream region.

机译:胚胎癌x成纤维细胞体细胞杂种中Oct-3 / 4基因表达的消失伴随着Oct-3 / 4上游区域的甲基化状态,染色质结构和转录活性的变化。

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摘要

In this study we evaluate, for the first time, the molecular mechanism that underlies the extinction of a tissue-specific transcription factor, Oct-3/4, in somatic cell hybrids and compared it with its down-regulation in retinoic acid (RA)-treated embryonal carcinoma (EC) cells. The Oct-3/4 gene, which belongs to the POU family of transcription factors and is abundantly expressed in EC (OTF9-63) cells, provides an excellent model system with which to study the extinction phenomenon. Unlike other genes whose expression has been repressed in hybrid cells but not during in vivo differentiation, Oct-3/4 expression is dramatically repressed in OTF9-63 x fibroblast hybrids and also during embryogenesis. The ectopic expression of Oct-3/4 in hybrid cells under a constitutive promoter is sufficient for transcriptional activation of an octamer-dependent promoter. These results argue against the possibility that fibroblasts contain a direct repressor which binds directly to the octamer sequence and prevents Oct-3/4 protein from binding. The extinction of Oct-3/4 binding activity in the hybrid cells occurs at the level of mRNA transcription, similarly to the repression of Oct-3/4 transcription during in vivo differentiation. This shutdown of Oct-3/4 transcription in hybrid cells and in RA-treated EC cells is accompanied by de novo methylation of its 1.3-kb upstream region. In contrast to EC cells, in which this region is sensitive to MspI digestion, in hybrid cells and in RA-treated EC cells, the Oct-3/4 upstream region is resistant to MspI digestion, which suggests a change in its chromatin structure. Furthermore, extinction is not restricted to the endogenous Oct-3/4 gene but is also exerted upon a transiently transfected reporter gene driven by the Oct-3/4 upstream region. Thus, changes in the cellular activity of trans-acting factors acting on the upstream region also contribute to the inability of the hybrid and RA-treated EC cells to generate Oct-3/4 transcripts. In conclusion, this study draws a connection between the shutdown of Oct-3/4 expression in RA-differentiated EC cells and its extinction in hybrid cells. In both systems, repression of Oct-3/4 expression is achieved through changes in the methylation status, chromatin structure, and transcriptional activity of the Oct-3/4 upstream regulatory region.
机译:在这项研究中,我们首次评估了在体细胞杂种中组织特异性转录因子Oct-3 / 4消失的分子机制,并将其与视黄酸(RA)的下调作了比较治疗的胚胎癌细胞(EC)。 Oct-3 / 4基因属于转录因子的POU家族,在EC(OTF9-63)细胞中大量表达,为研究灭绝现象提供了极好的模型系统。与其他基因的表达已在杂交细胞中被抑制但在体内分化过程中未受到抑制的基因不同,Oct-3 / 4的表达在OTF9-63 x成纤维细胞杂种中以及在胚胎发生过程中均被显着抑制。在组成型启动子下杂交细胞中Oct-3 / 4的异位表达足以使依赖八聚体的启动子转录激活。这些结果反对成纤维细胞含有直接阻抑物的可能性,该阻抑物直接结合八聚体序列并阻止Oct-3 / 4蛋白结合。杂交细胞中Oct-3 / 4结合活性的消失发生在mRNA转录水平,类似于体内分化过程中Oct-3 / 4转录的抑制。在杂交细胞和经RA处理的EC细胞中,Oct-3 / 4转录的关闭伴随着其1.3-kb上游区域的从头甲基化。与该区域对MspI消化敏感的EC细胞相反,在杂交细胞和RA处理的EC细胞中,Oct-3 / 4上游区域对MspI消化具有抵抗力,这表明其染色质结构发生了变化。此外,灭绝不仅限于内源的Oct-3 / 4基因,而且还施加在由Oct-3 / 4上游区域驱动的瞬时转染的报告基因上。因此,作用于上游区域的反式作用因子的细胞活性变化也导致杂种和RA处理的EC细胞无法生成Oct-3 / 4转录本。总而言之,这项研究在RA分化的EC细胞中Oct-3 / 4表达的关闭与其在杂交细胞中的灭绝之间建立了联系。在这两个系统中,通过甲基化状态,染色质结构和Oct-3 / 4上游调节区的转录活性的变化来实现对Oct-3 / 4表达的抑制。

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