Crippa M P, Nickol J M, Bustin M
Laboratory of Molecular Carcinogenesis, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892.
J Biol Chem. 1991 Feb 15;266(5):2712-4.
The high mobility group (HMG) chromosomal proteins may modulate the structure of distinct regions in chromatin, thereby affecting processes such as development and differentiation. Here we report that the levels of the HMG chromosomal proteins and their mRNAs change significantly during erythropoiesis. Erythroid cells from 5-day chicken embryos contain 2.5-10 times more HMG mRNAs than cells from 14-day embryos, whereas circulating cells from adult animals are devoid of HMG and most other mRNAs. Nuclear run-off experiments and Northern analysis of RNA from various developmental stages and from Percoll-fractionated cells indicate that the genes are transcribed in early cells of either the primitive or definitive erythroid lineage. The rate of synthesis of the various HMGs changes during erythropoiesis; in erythroid cells from 7-day embryos the ratio of HMG-14b or HMG-17 to HMG-14a is, respectively, 8 and 10 times lower than in 9-day erythroids. HMG-14a, the major chicken HMG-14 species, is synthesized mainly in primitive cells, while HMG-14b is preferentially synthesized in definitive cells. Thus, the change from primitive to definitive erythroid lineage during embryogenesis is accompanied by a change in the expression of HMG chromosomal proteins. Conceivably, these changes may affect the structure of certain regions in chromatin; however, it is not presently clear whether the switch in HMG protein gene expression is a consequence or a prerequisite for proper differentiation.
高迁移率族(HMG)染色体蛋白可能会调节染色质中不同区域的结构,从而影响发育和分化等过程。在此我们报告,HMG染色体蛋白及其mRNA的水平在红细胞生成过程中会发生显著变化。来自5日龄鸡胚的红细胞所含的HMG mRNA比14日龄胚胎的细胞多2.5至10倍,而成年动物的循环细胞则缺乏HMG及大多数其他mRNA。核转录实验以及对来自不同发育阶段和经Percoll分级分离细胞的RNA进行的Northern分析表明,这些基因在原始或定型红细胞系的早期细胞中被转录。在红细胞生成过程中,各种HMG的合成速率会发生变化;在7日龄胚胎的红细胞中,HMG - 14b或HMG - 17与HMG - 14a的比例分别比9日龄红细胞低8倍和10倍。主要的鸡HMG - 14种类HMG - 14a主要在原始细胞中合成,而HMG - 14b则优先在定型细胞中合成。因此,胚胎发育过程中从原始红细胞系向定型红细胞系的转变伴随着HMG染色体蛋白表达的变化。可以想象,这些变化可能会影响染色质中某些区域的结构;然而,目前尚不清楚HMG蛋白基因表达的转变是正常分化的结果还是前提条件。