Rodríguez A T, Pérez L, Morán F, Montero F, Suau P
Departamento de Bioquímica y Biología Molecular, Facultad de Ciencias, Universidad Autónoma de Barcelona, Spain.
Biophys Chem. 1991 Feb;39(2):145-52. doi: 10.1016/0301-4622(91)85016-j.
We have studied the interaction of the isolated C-terminal domain of histone H1 with linear DNA using precipitation curves and electron microscopy. The C-terminal domain shows a salt-dependent transition towards cooperative binding, which reaches completion at 60 mM NaCl. At this salt concentration, the C-terminal domain binds to some of the DNA molecules, leaving the rest free. A binding site of 22 base-pairs can be calculated from the stoichiometry of the precipitated fractions. The C-terminal domain condenses the DNA in toroidal particles. The average inner radius of the particles is of the order of 195 A. Consideration of the value of the inner radius of the toroids in the light of counterion condensation theory suggests that in these complexes the isolated C-terminal domain is capable of nearly full electrostatic neutralization of the DNA phosphate charge.
我们使用沉淀曲线和电子显微镜研究了组蛋白H1分离的C末端结构域与线性DNA的相互作用。C末端结构域表现出向协同结合的盐依赖性转变,在60 mM NaCl时达到完全转变。在此盐浓度下,C末端结构域与一些DNA分子结合,其余的则保持游离状态。根据沉淀组分的化学计量比可计算出一个22个碱基对的结合位点。C末端结构域使DNA在环形颗粒中凝聚。颗粒的平均内半径约为195埃。根据反离子凝聚理论考虑环形结构的内半径值表明,在这些复合物中,分离的C末端结构域能够几乎完全中和DNA磷酸基团的电荷。