Hill D A, Imbalzano A N
Department of Cell Biology, University of Massachusetts Medical School, 55 Lake Avenue North, Worcester, Massachusetts 01655, USA.
Biochemistry. 2000 Sep 26;39(38):11649-56. doi: 10.1021/bi001330z.
The physical structure and the compact nature of the eukaryotic genome present a functional barrier for any cellular process that requires access to the DNA. The linker histone H1 is intrinsically involved in both the determination of and the stability of higher order chromatin structure. Because histone H1 plays a pivotal role in the structure of chromatin, we investigated the effect of histone H1 on the nucleosome remodeling activity of human SWI/SNF, an ATP-dependent chromatin remodeling complex. The results from both DNase I digestion and restriction endonuclease accessibility assays indicate that the presence of H1 partially inhibits the nucleosome remodeling activity of hSWI/SNF. Neither H1 bound to the nucleosome nor free H1 affected the ATPase activity of hSWI/SNF, suggesting that the observed inhibition of hSWI/SNF nucleosome remodeling activity depends on the structure formed by the addition of H1 to nucleosomes.
真核生物基因组的物理结构和紧密性质对任何需要接触DNA的细胞过程都构成了功能障碍。连接组蛋白H1内在地参与了高阶染色质结构的确定和稳定性维持。由于组蛋白H1在染色质结构中起关键作用,我们研究了组蛋白H1对人SWI/SNF(一种ATP依赖的染色质重塑复合物)的核小体重塑活性的影响。DNase I消化和限制性内切酶可及性分析的结果均表明,H1的存在部分抑制了hSWI/SNF的核小体重塑活性。无论是结合到核小体上的H1还是游离的H1都不影响hSWI/SNF的ATP酶活性,这表明观察到的对hSWI/SNF核小体重塑活性的抑制取决于H1添加到核小体上所形成的结构。