Marion C, Hesse-Bezot C, Bezot P, Marion M J, Roux B, Bernengo J C
Biophys Chem. 1985 Jun;22(1-2):53-64. doi: 10.1016/0301-4622(85)80025-9.
The structural properties of H1-depleted oligonucleosomes are investigated by the use of quasielastic laser light scattering, thermal denaturation and circular dichroism and compared to those of H1-containing oligomers. To obtain information on the role of histone H1 in compaction of nucleosomes, translational diffusion coefficients (D) are determined for mono-to octanucleosomes over a range of ionic strength. The linear dependences of D on the number of nucleosomes show that the conformation of stripped oligomers is very extended and does not change drastically with increasing the ionic strength while the rigidness of the chain decreases due to the folding of linker DNA. The results prove that the salt-induced condensation is much smaller for H1-depleted than for H1-containing oligomers and that histone H1 is necessary for the formation of a supercoiled structure of oligonucleosomes, already present at low ionic strength.
通过准弹性激光光散射、热变性和圆二色性研究了H1缺失的寡核小体的结构特性,并与含H1的寡聚物的结构特性进行了比较。为了获得组蛋白H1在核小体压缩中的作用信息,在一系列离子强度下测定了单至八聚核小体的平移扩散系数(D)。D对核小体数量的线性依赖性表明,去除组蛋白的寡聚物的构象非常伸展,并且随着离子强度的增加不会发生剧烈变化,而由于连接DNA的折叠,链的刚性降低。结果证明,与含H1的寡聚物相比,H1缺失的寡聚物的盐诱导凝聚要小得多,并且组蛋白H1对于在低离子强度下已经存在的寡核小体超螺旋结构的形成是必需的。