Al-Natour Zeina, Hassan Ahmed H
Department of Biochemistry, Faculty of Medicine and Health Sciences, UAE University, Al-Ain, United Arab Emirates.
DNA Cell Biol. 2007 Jun;26(6):445-52. doi: 10.1089/dna.2006.0512.
The linker histones are involved in the salt-dependent folding of the nucleosomes into higher-order chromatin structures. To better understand the mechanism of action of these histones in chromatin, we studied the interactions of the linker histone H1 with DNA at various histone/DNA ratios and at different ionic strengths. In direct competition experiments, we have confirmed the binding of H1 to superhelical DNA in preference to linear or nicked circular DNA forms. We show that the electrophoretic mobility of the H1/supercoiled DNA complex decreases with increasing H1 concentrations and increases with ionic strengths. These results indicate that the interaction of the linker histone H1 with supercoiled DNA results in a soluble binding of H1 with DNA at low H1 or salt concentrations and aggregation at higher H1 concentrations. Moreover, we show that H1 dissociates from the DNA or nucleosomes at high salt concentrations. By the immobilized template pull-down assay, we confirm these data using the physiologically relevant nucleosome array template.
连接组蛋白参与核小体依赖于盐的折叠过程,形成高阶染色质结构。为了更好地理解这些组蛋白在染色质中的作用机制,我们研究了连接组蛋白H1在不同组蛋白/DNA比例和不同离子强度下与DNA的相互作用。在直接竞争实验中,我们证实了H1优先与超螺旋DNA结合,而非线性或带切口的环状DNA形式。我们发现,H1/超螺旋DNA复合物的电泳迁移率随H1浓度增加而降低,随离子强度增加而增加。这些结果表明,连接组蛋白H1与超螺旋DNA的相互作用导致在低H1或盐浓度下H1与DNA的可溶性结合,而在较高H1浓度下发生聚集。此外,我们还表明,在高盐浓度下H1会从DNA或核小体上解离。通过固定模板下拉实验,我们使用生理相关的核小体阵列模板证实了这些数据。