Louters L, Chalkley R
Biochemistry. 1985 Jun 18;24(13):3080-5. doi: 10.1021/bi00334a002.
We have asked whether histones synthesized in the absence of DNA synthesis can exchange into nucleosomal structures. DNA synthesis was inhibited by incubating hepatoma tissue culture cells in medium containing 5.0 mM hydroxyurea for 40 min. During the final 20 min, the cells were pulsed with [3H]lysine to radiolabel the histones (all five histones are substantially labeled under these conditions). By two electrophoretic techniques, we demonstrate that histones H1, H2A, and H2B synthesized in the presence of hydroxyurea do not merely associate with the surface of the chromatin but instead exchange with preexisting histones so that for the latter two histones there is incorporation into nucleosome structures. On the other hand, H3 and H4 synthesized during this same time period appear to be only weakly bound, if at all, to chromatin. These two histones have been isolated from postnuclear washes and purified. Some possible implications of in vivo exchange are discussed.
我们曾探讨过在无DNA合成情况下合成的组蛋白是否能交换进入核小体结构。通过在含5.0 mM羟基脲的培养基中孵育肝癌组织培养细胞40分钟来抑制DNA合成。在最后20分钟期间,用[3H]赖氨酸脉冲处理细胞以放射性标记组蛋白(在这些条件下所有五种组蛋白都被大量标记)。通过两种电泳技术,我们证明在羟基脲存在下合成的组蛋白H1、H2A和H2B并非仅仅与染色质表面结合,而是与预先存在的组蛋白发生交换,以至于对于后两种组蛋白而言,它们会掺入核小体结构中。另一方面,在同一时间段内合成的H3和H4似乎与染色质的结合很弱,甚至可能根本没有结合。这两种组蛋白已从核后洗涤物中分离并纯化。文中还讨论了体内交换的一些可能影响。