Michalski-Scrive C, Aubert J P, Couppez M, Biserte G, Loucheux-Lefebvre M H
Biochimie. 1982 May;64(5):347-55. doi: 10.1016/s0300-9084(82)80439-2.
The individual calf thymus histones H2A, H2B, H3 and H4, the dimer H2A-H2B, the tetramer (H3-H4)2 and the octamer (H2A-H2B-H3-H4)2 were studied by differential UV absorption i.e. observing absorption shifts of tyrosyl residues due to thermal perturbations. The histone octamer was studied in 2 M NaCl pH 7.5 a condition under which it is stable, as demonstrated by Eickbush and Moudrianakis [18]. In addition these authors suggested that the interactions which maintain the four histones as an octamer involve the weak association of one (H3-H4)2 tetramer with two H2A-H2B dimers and might be due essentially to histidine-lysine or histidine-tyrosine hydrogen bonds. We performed the study of the octamer by UV differential absorption using the tyrosyl residues as a natural probe to follow their interaction with different residues in their neighbourhood. The main result obtained shows that the tetramer (H3-H4)2 has all its tyrosyl residues exposed to the solvent whereas the octamer has no tyrosine exposed, suggesting that with this polymer no DNA-tyrosine interactions could take place.
通过紫外差示吸收法,即观察热扰动引起的酪氨酸残基的吸收位移,对单个小牛胸腺组蛋白H2A、H2B、H3和H4、二聚体H2A - H2B、四聚体(H3 - H4)2和八聚体(H2A - H2B - H3 - H4)2进行了研究。如Eickbush和Moudrianakis [18]所证明的,在2M NaCl pH 7.5的条件下对组蛋白八聚体进行了研究,在该条件下它是稳定的。此外,这些作者认为,将四种组蛋白维持为八聚体的相互作用涉及一个(H3 - H4)2四聚体与两个H2A - H2B二聚体的弱缔合,并且可能主要归因于组氨酸 - 赖氨酸或组氨酸 - 酪氨酸氢键。我们通过紫外差示吸收法对八聚体进行了研究,使用酪氨酸残基作为天然探针来追踪它们与周围不同残基的相互作用。获得的主要结果表明,四聚体(H3 - H4)2的所有酪氨酸残基都暴露于溶剂中,而八聚体没有酪氨酸暴露,这表明该聚合物不会发生DNA - 酪氨酸相互作用。