Balcarek J M, McMorris F A
J Biol Chem. 1983 Sep 10;258(17):10622-8.
We compared the DNase I sensitivity of beta-globin genes in dimethyl sulfoxide-treated and untreated Friend erythroleukemia cells to determine whether the induced globin synthesis in these cells is associated with any change in the chromatin conformation of the globin genes. The beta-globin genes were preferentially sensitive to DNase I digestion in both uninduced and induced cells as compared to the alpha-fetoprotein gene and bulk DNA. Additionally, we detected specific cleavage sites in the region of the beta-major globin gene when nuclei from uninduced cells were digested with DNase I. Following induction, a 2- to 4-fold increase in DNase I digestion at one of these hypersensitive sites was observed while digestion at the other sites was greatly reduced. We have localized this primary hypersensitive site to the 5' end of the beta-major gene. To determine when during induction these observed changes in chromatin structure occur, nuclei were digested with DNase I after 6 to 120 h of induction with dimethyl sulfoxide. Some change in chromatin conformation was detectable by 12 h of induction and the configuration characteristic of the fully induced state was established by 24 h of induction. Since it has been reported that increases in beta-globin mRNA levels are not detected until 18-20 h of induction, it appears that alterations in the chromatin conformation of the globin genes may precede the changes in other biochemical parameters associated with differentiation and may be an early reflection of commitment to the erythroid pathway.
我们比较了二甲基亚砜处理和未处理的Friend红白血病细胞中β-珠蛋白基因对DNase I的敏感性,以确定这些细胞中诱导的珠蛋白合成是否与珠蛋白基因的染色质构象变化有关。与甲胎蛋白基因和总体DNA相比,β-珠蛋白基因在未诱导和诱导的细胞中对DNase I消化均表现出优先敏感性。此外,当用DNase I消化未诱导细胞的细胞核时,我们在β-珠蛋白主要基因区域检测到了特异性切割位点。诱导后,其中一个超敏位点的DNase I消化增加了2至4倍,而其他位点的消化则大大减少。我们已将这个主要超敏位点定位到β-珠蛋白主要基因的5'端。为了确定在诱导过程中的何时发生这些观察到的染色质结构变化,在用二甲基亚砜诱导6至120小时后,用DNase I消化细胞核。诱导12小时后可检测到染色质构象的一些变化,诱导24小时后建立了完全诱导状态的构型特征。由于据报道直到诱导18 - 20小时后才检测到β-珠蛋白mRNA水平的增加,因此看来珠蛋白基因的染色质构象改变可能先于与分化相关的其他生化参数的变化,并且可能是向红细胞途径分化的早期反映。