Chitre A V, Korgaonkar K S
Biochem J. 1979 Apr 1;179(1):213-9. doi: 10.1042/bj1790213.
Studies of binding of ethidium bromide and quinacrine hydrochloride to native DNA at low ionic strength indicate that for both compounds the binding is selective, with about one binding site for about four nucleotides. Annealing of unfractionated histones to DNA by a salt-gradient dialysis method slightly decreases the binding of the dyes to DNA. Similar observations made with reconstituted preparations by using individual histone fractions reveal that the arginine-rich histones (histones H3 and H4) are most effective in decreasing the binding. The binding studies with ethidium bromide at high ionic strength and with denatured DNA show that strong dye binding to DNA is strongly dependent on the ionic strength and on the secondary structure of DNA. The histones are not effective in decreasing the dye binding under conditions of high ionic strength. The results are consistent with the observations [Oliver & Chalkley (1974) Biochemistry13, 5093-5098; Axel, Melchoir, Sollner-Web & Felsenfield (1974) Proc. Natl. Acad. Sci. U.S.A.71, 4101-4105] that histones form some kind of surface structures on DNA through non-specific interactions and [Kornberg & Thomas (1974) Science184, 865-868; Kornberg (1974) Science184, 868-871; D'Anna & Isenberg (1974) Biochemistry13, 4992-4997; Vandegrift, Serra, Marve & Wagner (1974) Biochemistry13, 5087-5092] that the tendency of arginine-rich histones to aggregate may be an important factor in determining the structure of chromatin.
在低离子强度下对溴化乙锭和盐酸喹吖因与天然DNA结合的研究表明,对于这两种化合物,结合具有选择性,大约四个核苷酸有一个结合位点。通过盐梯度透析法将未分级的组蛋白与DNA退火,会使染料与DNA的结合略有减少。使用单个组蛋白组分对重组制剂进行的类似观察表明,富含精氨酸的组蛋白(组蛋白H3和H4)在减少结合方面最有效。在高离子强度下对溴化乙锭与变性DNA的结合研究表明,染料与DNA的强结合强烈依赖于离子强度和DNA的二级结构。在高离子强度条件下,组蛋白在减少染料结合方面无效。这些结果与以下观察结果一致:[奥利弗和乔克利(1974年),《生物化学》13卷,5093 - 5098页;阿克塞尔、梅尔乔尔、索尔纳 - 韦伯和费尔森菲尔德(1974年),《美国国家科学院院刊》71卷,4101 - 4105页]组蛋白通过非特异性相互作用在DNA上形成某种表面结构,以及[科恩伯格和托马斯(1974年),《科学》184卷,865 - 868页;科恩伯格(1974年),《科学》184卷,868 - 871页;达纳和伊森伯格(1974年),《生物化学》13卷,4992 - 4997页;范德格里夫特、塞拉、马尔维和瓦格纳(1974年),《生物化学》13卷,5087 - 5092页]富含精氨酸的组蛋白聚集的倾向可能是决定染色质结构的一个重要因素。