Sperling R, Bustin M
Nucleic Acids Res. 1976 May;3(5):1263-75. doi: 10.1093/nar/3.5.1263.
Histone interactions which occur, at moderate ionic strengths, when several types of purified, renatured histones are mixed at equimolar ratios have been studied. The four histones H2A,H2B,H3 and H4 complex and form dimers. Histone H1 does not interact with the other four histone types and does not form dimers. Mixing of single histone species with preformed histone pairs as well as mixing of two different types of histone pairs, leads to exchange of histones among the pairs and formation of dimers. No trimers are formed. The dimers are in equilibrium with high-molecular weight histone structures. The results indicate that histone dimers may serve as a stable intermediate in histone assembly. Because each histone type (except H1) can interact with itself as well as with each of the other three histone types we suggest that each histone type should be considered as an interchangeable subunit of a multichain protein in which the dimer species is the most stable structure.
已经研究了在中等离子强度下,当几种纯化、复性的组蛋白以等摩尔比混合时发生的组蛋白相互作用。四种组蛋白H2A、H2B、H3和H4形成复合物并形成二聚体。组蛋白H1不与其他四种组蛋白类型相互作用,也不形成二聚体。将单一组蛋白种类与预先形成的组蛋白对混合,以及将两种不同类型的组蛋白对混合,会导致组蛋白在这些对之间交换并形成二聚体。不会形成三聚体。二聚体与高分子量组蛋白结构处于平衡状态。结果表明,组蛋白二聚体可能是组蛋白组装过程中的一个稳定中间体。由于每种组蛋白类型(除H1外)都能与自身以及其他三种组蛋白类型中的每一种相互作用,我们建议应将每种组蛋白类型视为一种多链蛋白的可互换亚基,其中二聚体种类是最稳定的结构。