Chrysogelos S, Riley D E, Stein G, Stein J
Proc Natl Acad Sci U S A. 1985 Nov;82(22):7535-9. doi: 10.1073/pnas.82.22.7535.
By use of synchronized human HeLa S3 cells, a site sensitive to both DNase I and nuclease S1 was identified 50-150 base pairs upstream of the ATG codon of a cell cycle-dependent histone H4 gene. This site expanded to include a broad region of approximately equal to 300 base pairs sensitive to DNase I throughout S phase and then narrowed again to the original site after the completion of DNA replication. The level of nuclease S1 sensitivity was greatest during early S phase, when the gene is replicated and its transcription rate is maximal. The chromatin structure of the human beta-globin gene, which is not expressed in HeLa cells, was also analyzed throughout the cell cycle, and in no case was a sub-band seen as a result of DNase I or nuclease S1 digestion, nor were there any changes in nuclease sensitivity correlated with its replication. Thus the cell cycle-dependent chromatin alterations in this histone H4 gene appear to be due to the coupled replication and expression of this gene rather than simply its replication. These results suggest that histone genes, as compared with developmentally regulated genes, exhibit an "intermediate" level of regulation whereby the gene is never in a completely inactive conformation, but changes in chromatin structure occur as a function of the cell cycle and expression.
通过使用同步化的人HeLa S3细胞,在细胞周期依赖性组蛋白H4基因的ATG密码子上游50 - 150个碱基对处鉴定出一个对DNase I和核酸酶S1均敏感的位点。在整个S期,该位点扩展为一个对DNase I敏感的约300个碱基对的宽泛区域,DNA复制完成后又再次缩小至原始位点。核酸酶S1敏感性水平在S期早期最高,此时该基因进行复制且转录速率最大。对在HeLa细胞中不表达的人β - 珠蛋白基因的染色质结构也在整个细胞周期进行了分析,无论何种情况,DNase I或核酸酶S1消化均未产生亚带,其核酸酶敏感性也未随复制发生任何变化。因此,该组蛋白H4基因中依赖细胞周期的染色质改变似乎是由于该基因的复制与表达偶联,而非仅仅是其复制。这些结果表明,与发育调控基因相比,组蛋白基因表现出一种“中间”调控水平,即该基因从未处于完全无活性的构象,但染色质结构的变化是细胞周期和表达的函数。