Bergman M, Ringertz N
Department of Medical Cell Genetics, Medical Nobel Institute, Karolinska Institutet, Stockholm, Sweden.
J Cell Sci. 1990 Sep;97 ( Pt 1):167-75. doi: 10.1242/jcs.97.1.167.
Expression of erythro-specific chick genes was studied in heterokaryons prepared by fusing chick erythrocytes (CE) with rat myoblasts. In this type of heterokaryon the inactive erythrocyte nucleus takes up nuclear proteins of myoblast origin and undergoes transcriptional reactivation. In order to study the stability of the genetic programming of the reactivated CE nucleus, chick gene expression was examined by analysis of RNA from the heterokaryons. Probes for several erythro- and chick-specific genes were used. The heterokaryons showed strong expression of the chick histone H5 and adult alpha-globin genes, while other genes, e.g. the transcription factor Eryf1 gene, normally expressed during erythroid differentiation, were not transcribed. Although the CE used were of the definitive lineage, the heterokaryons showed activation of the chick embryonic beta-globin gene, i.e. a gene normally expressed only in CE of the primitive lineage. We conclude that the reactivation of the mature CE nucleus in a rat cytoplasm resulted in a more immature erythroid gene expression pattern. The activation of the embryonic beta-globin gene indicated a switch of the lineage-specific gene expression pattern. This switch occurred in the absence of DNA replication. The strong expression of the globin and H5 genes in heterokaryons, in the absence of expression of the regulatory factor Eryf1, suggested the existence of Eryf1-independent regulatory mechanisms for erythroid gene expression in these cells.
通过将鸡红细胞(CE)与大鼠成肌细胞融合制备异核体,研究了鸡红细胞特异性基因的表达。在这种类型的异核体中,无活性的红细胞核摄取成肌细胞来源的核蛋白并经历转录重新激活。为了研究重新激活的CE核的遗传编程的稳定性,通过分析异核体的RNA来检测鸡基因的表达。使用了几种红细胞特异性和鸡特异性基因的探针。异核体显示出鸡组蛋白H5和成年α-珠蛋白基因的强烈表达,而其他基因,例如在红细胞分化过程中正常表达的转录因子Eryf1基因,则未被转录。尽管所使用的CE属于定型谱系,但异核体显示出鸡胚胎β-珠蛋白基因的激活,即一种通常仅在原始谱系的CE中表达的基因。我们得出结论,成熟的CE核在大鼠细胞质中的重新激活导致了更不成熟的红细胞基因表达模式。胚胎β-珠蛋白基因的激活表明谱系特异性基因表达模式发生了转变。这种转变在没有DNA复制的情况下发生。在缺乏调节因子Eryf1表达的情况下,异核体中珠蛋白和H5基因的强烈表达表明这些细胞中存在不依赖Eryf1的红细胞基因表达调节机制。