Hsiang M W, Cole R D
Proc Natl Acad Sci U S A. 1977 Nov;74(11):4852-6. doi: 10.1073/pnas.74.11.4852.
Large doughnut-shaped complexes were formed when histone H1 was mixed with DNA in amounts that extensively neutralized it. The doughnut shape is the most prevalent from observed by electron microscopy for linear double-stranded DNA independent of the molecular weight of the DNA in the range 1.2 x 10(6) to 25 x 10(6) at an H1/DNA input weight ratio of 1.3, at ionic strength 0.17. Doughnuts were not observed for single-stranded DNA-H1 complexes; instead, the complexes were globular. The circumference of the doughnutshaped particles indicates that much of the rigidity of duplex DNA in the complex has remained. Evidently, the condensation of the nucleohistone is constrained by the rigidity of duplex DNA and, under this constraint, surface contact with water is minimized by adopting a doughnut shape. Histone H5 causes a type of DNA condensation similar to that of H1 at comparable charge ratios. Core histones H2A-H2b, H3, and H4 complex with DNA to form globular aggregates of such small diameter that the duplex DNA in them must be much more tightly folded than is the case with the doughnut-shaped complexes. Because these histones are designed to fold DNA into nucleosomes 100 A wide, they must destroy the rigidity of free duplex DNA, perhaps by forming kinks in the chain.
当组蛋白H1与DNA以能大量中和DNA的量混合时,会形成大型甜甜圈状复合物。在离子强度为0.17、H1/DNA输入重量比为1.3的条件下,对于分子量在1.2×10⁶至25×10⁶范围内的线性双链DNA,通过电子显微镜观察发现甜甜圈形状是最普遍的。对于单链DNA - H1复合物未观察到甜甜圈形状;相反,这些复合物是球状的。甜甜圈状颗粒的周长表明复合物中双链DNA的许多刚性得以保留。显然,核组蛋白的凝聚受到双链DNA刚性的限制,在这种限制下,通过采用甜甜圈形状可使与水的表面接触最小化。组蛋白H5在可比的电荷比下会引起一种与H1类似的DNA凝聚。核心组蛋白H2A - H2b、H3和H4与DNA结合形成直径如此小的球状聚集体,以至于其中的双链DNA必定比甜甜圈状复合物中的双链DNA折叠得更紧密。由于这些组蛋白旨在将DNA折叠成100埃宽的核小体,它们必定破坏了游离双链DNA的刚性,也许是通过在链中形成纽结来实现的。