Mañosa J, Palau J, Lawrence J J
Int J Pept Protein Res. 1984 Dec;24(6):533-42. doi: 10.1111/j.1399-3011.1984.tb03157.x.
The spin label method has been used to obtain information about conformational changes of histone oligomers taking advantage of the fact that at a low ionic strength and in the presence of other histones about 45% of cysteine residues of histone H3 react with the 3-maleimido-2,2,5,5-tetramethyl-1-pyrrolidinyloxyl spin label. For the labeled complexes H3-H4 and H nu the degree of immobilization of the spin label is a function of the ionic strength. This variation is identical for both complexes within a long range of ionic strengths, including the interval of 0.8-2 M NaCl, under which conditions interactions are known to exist between the tetramer (H3)2 (H4)2 and the dimer (H2A) (H2B). This finding suggests a negligible influence of the dimer for modifying the cysteine residue environment of histone H3 on octamer formation. GuHCl treatment at high ionic strength of the labeled complexes gives rise to a non-lineal increase in the degree of mobility of the spin label. This increase, at low GuHCl concentration (0-0.5 M GuHCl), is interpreted as showing a lowering in rigidity for the Cys residue environment, without affecting the general stability of the tetramer (H3)2 (H4)2. At higher GuHCl concentration (2-3 M GuHCl) the increase in the spin label mobility is related to a dissociation of the complexes in single histones. Our results are consistent with the view that the overall structure of the tetramer, as well as its conformational changes during complex structuration or denaturation, are not strongly affected by the presence of the dimer (H2A) (H2B).
在低离子强度且存在其他组蛋白的情况下,组蛋白H3约45%的半胱氨酸残基会与3 - 马来酰亚胺基 - 2,2,5,5 - 四甲基 - 1 - 吡咯烷基氧基自旋标记物发生反应,自旋标记法已被用于获取有关组蛋白寡聚体构象变化的信息。对于标记的复合物H3 - H4和H nu,自旋标记物的固定程度是离子强度的函数。在很宽的离子强度范围内,包括0.8 - 2 M NaCl区间,这两种复合物的这种变化是相同的,已知在该条件下四聚体(H3)2(H4)2和二聚体(H2A)(H2B)之间存在相互作用。这一发现表明二聚体对修饰组蛋白H3半胱氨酸残基环境以形成八聚体的影响可忽略不计。在高离子强度下用盐酸胍处理标记的复合物会导致自旋标记物迁移率呈非线性增加。在低盐酸胍浓度(0 - 0.5 M盐酸胍)下,这种增加被解释为表明半胱氨酸残基环境的刚性降低,而不影响四聚体(H3)2(H4)2的总体稳定性。在较高盐酸胍浓度(2 - 3 M盐酸胍)下,自旋标记物迁移率的增加与复合物解离为单个组蛋白有关。我们的结果与以下观点一致:四聚体的整体结构及其在复合物形成或变性过程中的构象变化不受二聚体(H2A)(H2B)存在的强烈影响。