Zayetz V W, Bavykin S G, Karpov V L, Mirzabekov A D
Nucleic Acids Res. 1981 Mar 11;9(5):1053-68. doi: 10.1093/nar/9.5.1053.
The sequential arrangement of histones along DNA in nucleosome core particles was determined between 0.5 and 600 mM salt and from 0 to 8 M urea. These concentrations of salt and urea up to 6 M had no significant effect on the linear order of histones along DNA but 8 M urea caused the rearrangement of histones. Conformational changes in cores have been identified within these ranges of conditions by several laboratories 8-21. Also, abrupt structural changes in the cores, apparently their unfolding, were found by gel electrophoresis to occur at urea concentration, between 4 and 5 M. 600 mM salt and 6 M urea were shown to relax the binding of histones to DNA in cores but do not however release histones or some part of their molecules from DNA. It appears therefore that nucleosomal cores can undergo some conformational transitions and unfolding whereas their primary organization remains essentially unaffected. These results are consistent with a model of the core particles in which the histone octamer forms something like a helical "rim" along the superhelical DNA and histone-histone interactions beyond the "rim" are rather weak in comparison with those within the "rim".
在0.5至600 mM的盐浓度以及0至8 M的尿素浓度范围内,确定了核小体核心颗粒中组蛋白沿DNA的顺序排列。这些盐浓度和高达6 M的尿素浓度对组蛋白沿DNA的线性排列没有显著影响,但8 M尿素会导致组蛋白重排。在这些条件范围内,几个实验室已经确定了核心颗粒的构象变化8 - 21。此外,通过凝胶电泳发现,在4至5 M的尿素浓度下,核心颗粒会发生明显的结构变化,显然是其解折叠。结果表明,600 mM盐和6 M尿素会削弱组蛋白与核心颗粒中DNA的结合,但不会使组蛋白或其部分分子从DNA上释放。因此,核小体核心颗粒似乎可以经历一些构象转变和解折叠,而其一级结构基本上不受影响。这些结果与核心颗粒的模型一致,在该模型中,组蛋白八聚体沿着超螺旋DNA形成类似螺旋“边缘”的结构,与“边缘”内的相互作用相比,“边缘”外的组蛋白 - 组蛋白相互作用相当弱。