Trifonov E N, Bettecken T
Biochemistry. 1979 Feb 6;18(3):454-6. doi: 10.1021/bi00570a011.
Assuming that variation of nuclease sensitivity along nucleosomal DNA can basically be attributed to orientations of sugar--phosphate bonds relative to histone core, the pitch of chromatin DNA is estimated to be 10.33--10.40 base pairs. This is in accordance both with the known measured average distance between cleavage sites (10.3--10.4 base pairs) and with published data on variation of relative sensitivities of these sites to nuclease attack. The variation can be explained solely as a result of the systematic change of orientation of sugar--phosphate bonds of sensitive sites without additional suggestions about local steric hindrances by histone molecules. According to the analysis locations of sites least sensitive to nuclease attack should not depend on kind of endonuclease though the stagger could differ. We conclude that the nucleosome core particle is axially symmetrical. The results strongly support the suggestion that DNA is wrapped around the histone octamer smoothly, without interruption of base-stacking interactions.
假设沿着核小体DNA的核酸酶敏感性变化基本上可归因于糖-磷酸键相对于组蛋白核心的方向,染色质DNA的螺距估计为10.33-10.40个碱基对。这既与已知测量的切割位点之间的平均距离(10.3-10.4个碱基对)一致,也与这些位点对核酸酶攻击的相对敏感性变化的已发表数据一致。这种变化可以仅解释为敏感位点糖-磷酸键方向的系统变化,而无需关于组蛋白分子局部空间位阻的额外假设。根据分析,对核酸酶攻击最不敏感的位点的位置不应取决于内切核酸酶的种类,尽管错开可能不同。我们得出结论,核小体核心颗粒是轴向对称的。这些结果有力地支持了DNA平滑地缠绕在组蛋白八聚体周围而不中断碱基堆积相互作用的观点。