Martinson H G, True R J
Biochemistry. 1979 Mar 20;18(6):1089-94. doi: 10.1021/bi00573a024.
We have studied the relative stabilities to urea denaturation of histone-histone binding interactions as they occur both in chromatin and in histone complexes free in solution. We have used the two zero-length contact-site cross-linking agents, tetranitromethane and UV light, to measure the relative degree of H2B-H4 and H2A-H2B association under various conditions. The two interactions were disrupted coordinately when nuclei were treated with increasing concentrations of urea. In contrast, when histone complex in 2 M NaCl were treated with urea, the H2B-H4 interaction was found to be much less stable than the H2A-H2B interaction. We have shown previously that nucleosomes unfold at low ionic strengths such that the H2B-H4 but not the H2A-H2B interaction is broken in the process. We speculate that the preferential rupture of the H2B-H4 contact is of physiological significance.
我们研究了染色质以及溶液中游离的组蛋白复合物中组蛋白-组蛋白结合相互作用对尿素变性的相对稳定性。我们使用了两种零长度接触位点交联剂,四硝基甲烷和紫外线,来测量在各种条件下H2B-H4和H2A-H2B缔合的相对程度。当用浓度不断增加的尿素处理细胞核时,这两种相互作用会协同被破坏。相比之下,当用尿素处理2M NaCl中的组蛋白复合物时,发现H2B-H4相互作用比H2A-H2B相互作用稳定性差得多。我们之前已经表明,核小体在低离子强度下会展开,在此过程中H2B-H4相互作用而非H2A-H2B相互作用会被破坏。我们推测H2B-H4接触的优先断裂具有生理意义。