Boseley P G, Bradbury E M, Butler-Browne G S, Carpenter B G, Stephens R M
Eur J Biochem. 1976 Feb 2;62(1):21-31. doi: 10.1111/j.1432-1033.1976.tb10093.x.
Experiments have been carried out to define clearly which histone combinations can induce a higher order structure when combined with DNA. The criterion for a higher order structure being the series of low-angle X-ray diffraction maxima nominally at 5.5 nm, 3.7 nm, 2.7 nm and 2.2 nm. Such a pattern, with resolution similar to that of H1-depleted chromatin, is readily attainable by recombining histones H2A + H2B + H3 + H4 with DNA using a salt-gradient dialysis method. However, the use of urea in the recombination procedure is shown to be detrimental to the production of a higher order structure. Low-angle ring patterns are not obtained by recomgining DNA with single pure histones or any combination of histone pairs exept H3 + H4. The diffraction maxima from the latter are, however, weaker than those from chromatin and there are pronounced semi-equatorial arcs. The presence of a third histone, either H2A or H2B in the H3 + H4 recombination mixture tends to distort the recognised low-angle pattern. It is concluded that the histone pair H3 + H4 is essential for the formation of a regular higher order structure in chromatin, although for a complete structural development the presence of H2A + H2B is also required.
已开展实验以明确哪些组蛋白组合与DNA结合时能够诱导形成更高层次的结构。更高层次结构的标准是一系列名义上位于5.5纳米、3.7纳米、2.7纳米和2.2纳米处的低角度X射线衍射最大值。通过使用盐梯度透析法将组蛋白H2A + H2B + H3 + H4与DNA重组,很容易获得这种分辨率与H1缺失染色质相似的模式。然而,在重组过程中使用尿素被证明对更高层次结构的产生不利。将DNA与单一纯组蛋白或除H3 + H4之外的任何组蛋白对组合进行重组时,无法获得低角度环形图案。不过,后者的衍射最大值比染色质的衍射最大值弱,并且存在明显的半赤道弧。在H3 + H4重组混合物中存在第三种组蛋白(H2A或H2B)往往会扭曲公认的低角度模式。得出的结论是,组蛋白对H3 + H4对于染色质中规则的更高层次结构的形成至关重要,尽管为了实现完整的结构发育,也需要H2A + H2B的存在。