Bina-Stein M, Simpson R T
Cell. 1977 Jul;11(3):609-18. doi: 10.1016/0092-8674(77)90078-2.
We demonstrate that the arginine-rich histones H3 and H4 can introduce torsional constraints on closed circular DNA with a concomitant compaction of the nucleic acid. SV40 DNA I complexed with H3 and H4 appears relaxed in electron micrographs and contains particles of 75 +/- 10 A in diameter along the DNA. SV40 DNA I is contracted 2.75 +/- 0.25 fold by all the four smaller histones and 2.6 +/- 0.4 fold by H3 and H4 alone. The arginine-rich histones can cause the topological equivalent of unwinding the DNA close to one Watson-Crick turn per particle formed. Spherical nucleoprotein complexes morphologically similar to isolated nu bodies or nucleosomes are obtained by association of H3 and H4 with 140 base pair length DNA isolated from chromatin core particles. These reconstituted particles sediment at 9.8S, as compared to 10.8S for native core particles, and contain a tetramer of the arginine-rich histones. None of these specific alterations in DNA structure is seen om complexing the slightly lysine rich-histones H2A and H2B to DNA. Our data provide further evidence indicating that the arginine-rich histones are the major determinants of the architecture of DNA within the chromatin core particle.
我们证明,富含精氨酸的组蛋白H3和H4可对闭环DNA引入扭转限制,并伴随核酸的压缩。与H3和H4复合的SV40 DNA I在电子显微镜照片中显得松弛,并且沿着DNA含有直径为75±10 Å的颗粒。SV40 DNA I被所有四种较小的组蛋白收缩2.75±0.25倍,仅被H3和H4收缩2.6±0.4倍。富含精氨酸的组蛋白可导致拓扑学上相当于每形成一个颗粒解开接近一个沃森-克里克螺旋的DNA。通过将H3和H4与从染色质核心颗粒分离的140碱基对长度的DNA缔合,获得了形态上类似于分离的核小体或核小体的球形核蛋白复合物。这些重构颗粒的沉降系数为9.8S,而天然核心颗粒为10.8S,并且含有富含精氨酸组蛋白的四聚体。在将略富含赖氨酸的组蛋白H2A和H2B与DNA复合时,未观察到DNA结构的这些特异性改变。我们的数据提供了进一步的证据,表明富含精氨酸的组蛋白是染色质核心颗粒内DNA结构的主要决定因素。