Hill C S, Thomas J O
Department of Biochemistry, University of Cambridge, England.
Eur J Biochem. 1990 Jan 12;187(1):145-53. doi: 10.1111/j.1432-1033.1990.tb15288.x.
A three-stage chemical modification procedure [Lambert, S. F. & Thomas, J. O. (1986) Eur. J. Biochem. 160, 191-201; Thomas, J. O. & Wilson, C. M. (1986) EMBO J. 5, 3531-3537] for selectively radiolabelling lysine residues that interact with DNA has been used to investigate core histone--DNA interactions in sea urchin sperm chromatin, in particular to determine the binding site of the long N-terminal domain of sperm-specific H2B. Comparison of the patterns of radiolabelling of core histones from extended chromatin and nucleosome core particles (which lack linker DNA) reveals the regions of the histones involved in interactions with the linker. The results show that the N-terminal domain of H2B is bound to DNA outside the 146-bp nucleosome core, presumably to the linker DNA. H2A and H4 make no substantial contacts with the linker in extended chromatin; the N-terminal tail of H4 is bound within the core particle, but the N-terminal tail of H2A is not bound in core particles or in extended chromatin, and may therefore have a role in higher-order structure. H3, like H2B, makes contacts with DNA outside the 146-bp nucleosome core in its N-terminal region, as well as elsewhere, and probably interacts with the two 10-bp extensions that complete the two turns of DNA in the nucleosome and/or with the linker.
一种用于选择性地对与DNA相互作用的赖氨酸残基进行放射性标记的三阶段化学修饰程序[兰伯特,S.F. & 托马斯,J.O.(1986年)《欧洲生物化学杂志》160卷,191 - 201页;托马斯,J.O. & 威尔逊,C.M.(1986年)《欧洲分子生物学组织杂志》5卷,3531 - 3537页]已被用于研究海胆精子染色质中的核心组蛋白 - DNA相互作用,特别是确定精子特异性H2B长N端结构域的结合位点。对伸展染色质和核小体核心颗粒(缺乏连接DNA)的核心组蛋白放射性标记模式的比较揭示了组蛋白中与连接子相互作用的区域。结果表明,H2B的N端结构域与146碱基对核小体核心之外的DNA结合,大概是与连接DNA结合。在伸展染色质中,H2A和H4与连接子没有实质性接触;H4的N端尾巴结合在核心颗粒内,但H2A的N端尾巴在核心颗粒或伸展染色质中都没有结合, 因此可能在更高层次结构中起作用。与H2B一样,H3在其N端区域以及其他部位与146碱基对核小体核心之外的DNA有接触,并且可能与完成核小体中DNA两圈的两个10碱基对延伸以及/或者与连接子相互作用。