Dunn K, Griffith J D
Nucleic Acids Res. 1980 Feb 11;8(3):555-66. doi: 10.1093/nar/8.3.555.
The binding of core histones (H2A, H2B, H3, H4) to a circular plasmid DNA and to a circular DNA-RNA hybrid molecule of similar size has been compared. Circular hybrid molecules were formed from single stranded fd DNA by synthesis of the complimentary strand with ribonucleotides using wheat germ RNA polymerase II. Upon reconstitution of plasmid DNA circles with histone, the sedimentation profiles of the DNA remained sharp by increased several fold in rate. Material from the peak fractions of these sedimentations appeared to be condensed circular loops of nucleosomes when examined by electron microscopy (EM), and the mass ratio of DNA to histone (at the histone concentrations which produced the fastest sedimentations) was typical of native chromatin. In contrast, the sedimentation behavior of DNA-RNA hybrid circles after addition of histone remained unchanged except for a minor fraction which exhibited a broad and faster sedimentation rate. Examination by EM revealed that most of the molecules appeared identical to protein free hybrid circles while the minor, faster sedimenting fraction appeared to be two or more circles bound together by protein aggregates. Finally, a linear molecule consisting of about 3000 base pairs of duplex DNA covalently joined on both ends to 1500 base pairs of RNA-DNA hybrid helix was constructed. Reconstitution of this molecule with core histone showed nucleosome formation only on the central DNA duplex region. Isopycnic banding of fixed hybrid-histone mixtures showed that little or no histone had bound to the bulk of the full hybrid molecules. We suggest that the presence of RNA in a nucleic acid duplex inhibits the condensation of the duplex into a nucleosomal structure by histone.
已对核心组蛋白(H2A、H2B、H3、H4)与环状质粒DNA以及与大小相似的环状DNA - RNA杂交分子的结合情况进行了比较。环状杂交分子由单链fd DNA通过使用小麦胚芽RNA聚合酶II用核糖核苷酸合成互补链而形成。用组蛋白重构质粒DNA环后,DNA的沉降图谱保持清晰,但沉降速率增加了几倍。通过电子显微镜(EM)检查,这些沉降峰部分的物质似乎是核小体的浓缩环状环,并且DNA与组蛋白的质量比(在产生最快沉降的组蛋白浓度下)是天然染色质的典型特征。相比之下,添加组蛋白后DNA - RNA杂交环的沉降行为保持不变,只是有一小部分表现出较宽且较快的沉降速率。EM检查显示,大多数分子看起来与无蛋白杂交环相同,而较小的、沉降较快的部分似乎是由蛋白质聚集体结合在一起的两个或更多个环。最后,构建了一个线性分子,其由两端共价连接到1500个碱基对的RNA - DNA杂交螺旋上的约3000个碱基对的双链DNA组成。用核心组蛋白重构该分子表明仅在中央DNA双链区域形成了核小体。固定的杂交 - 组蛋白混合物的等密度梯度离心显示,很少或没有组蛋白与大部分完整杂交分子结合。我们认为核酸双链体中RNA的存在会抑制双链体通过组蛋白浓缩成核小体结构。